3.2. Chemical synthesis
p-Methoxyphenyl 4-O-allyl-2,3-O-isopropylidene-α-L-rhamnopyranoside (
18). Sodium hydride (2.3 g, 47.4 mmol) and allyl bromide (3.6 mL, 41.1 mmol) were successively added to a soln. of compound
17 [14] (9.8 g, 31.6 mmol) in N,N-dimethylformamide (50 mL) which was cooled in an ice-salt bath. Then the reaction mixture was slowly allowed to reach room temperature and stirred for 20 min at the end of which time TLC (4:1 petroleum ether-EtOAc) indicated that the reaction was complete. The reaction mixture was diluted with EtOAc (100 mL), washed with ice-water, and dried (Na
2SO
4). The soln was concentrated, and the residue was subjected to column chromatography (8:1 petroleum ether-EtOAc) to give the desired product
18 (10.5 g, 95%) as a foamy solid.
Rf = 0.68 (4:1 petroleum ether-EtOAc);
-61.4 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 7.00-6.81 (m, 4 H, Bz-
H), 5.93 (m, 1 H, CH
2=C
H-CH
2O), 5.59 (s, 1 H, H-1), 5.32-5.16 (m, 2 H), 4.40-4.32 (m, 3 H), 4.14 (m, 1 H), 3.83-3.77 (m, 4 H, H-5, OC
H3), 3.21 (m, 1 H), 1.56 (s, 3 H, C
H3), 1.40 (s, 3 H, C
H3), 1.23 (d, 3 H,
J = 6.3 Hz, H-6). Anal. Calcd. for C
19H
26O
6: C, 65.13; H, 7.48; found: C, 65.29; H, 7.63.
p-Methoxyphenyl 4-O-allyl-2,3-di-O-benzoyl-α-L-rhamnopyranoside (
19). Compound
18 (7.8 g, 22.3 mmol) was dissolved in 70% HOAc (200 mL) and stirred for 2 h at 75°C, at the end of which time TLC (2:1 petroleum ether-EtOAc) indicated the completion of the reaction. The mixture was concentrated under reduced pressure and then coevaporated with toluene (2 × 40 mL). To a soln of the residue (7.3 g, 23.5 mmol) in pyridine (60 mL) was added benzoyl chloride (8.2 mL, 70.5 mmol) dropwise. After stirring for 8 h at rt, TLC (3:1 petroleum ether-EtOAc) indicated that the reaction was complete. Methanol (1 mL) was added to quench the reaction and then water (100 mL) was added to the reaction mixture. The aq. soln. was extracted with EtOAc (3 × 200 mL), the extract was washed with 1 M HCl and saturated aq. sodium bicarbonate, dried (Na
2SO
4) and concentrated. The residue was passed through a short silica-gel column with 6:1 petroleum ether-EtOAc as the eluent to give
19 (10.2 g, 88% for two steps) as a foamy solid.
Rf = 0.42 (4:1 petroleum ether-EtOAc);
+21.1 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.07-7.34 (m, 10 H, Bz-
H), 7.08-6.83 (m, 4 H, MeOC
6H4), 5.87-5.75 (m, 3 H), 5.52 (d, 1 H,
J = 1.8 Hz, H-1), 5.17 (m, 1 H), 5.08 (m, 1 H), 4.20-4.08 (m, 3 H), 3.78-3.71 (m, 4 H, H-5, OC
H3), 1.41 (d,
J = 6.2 Hz, 3 H, H-6); Anal. Calcd. for C
30H
30O
8: C, 69.49; H, 5.83; found: C, 69.55; H, 5.58;
4-O-Allyl-2,3-di-O-benzoyl-α-L-rhamnopyranosyl trichloroacetimidate (
10). To a soln. of
19 (10.0 g, 19.3 mmol) in 80% MeCN (200 mL) was added ceric ammonium nitrate (42.3 g, 77.2 mmol). The mixture was stirred for 20 min at 35 °C, at the end of which time TLC (4:1 petroleum ether-EtOAc) indicated that the reaction was complete. The solvents were evaporated
in vacuo at 50 °C to give a residue, which was dissolved in CH
2Cl
2, and washed with water. The organic phase was dried (Na
2SO
4) and concentrated. Purification by silica gel chromatography with 5:1 petroleum ether-EtOAc as the eluent afforded a foamy residue. The residue was dried under high vacuum for 2 h, then was dissolved in dry CH
2Cl
2 (50 mL), trichloroacetonitrile (2.5 mL, 24.3 mmol) and 1,8-diaza-bicyclo[5.4.0] undecene (DBU) (0.3 mL, 30 mmol) were added. The mixture was aged under the nitrogen atmosphere until completion (TLC, 4:1 petroleum ether-EtOAc). Concentration of the reaction mixture and purification of the residue by column chromatography (5:1 petroleum ether-EtOAc) gave
10 (7.6 g, 72% for two steps) as a white foamy solid.
Rf = 0.67 (4:1 petroleum ether-EtOAc);
+39.3 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.74 (s, 1 H, C=N
H), 8.06-7.34 (m, 10 H, Bz-
H ), 6.39 (d, 1 H,
J = 1.9 Hz, H-1), 5.85-5.71 (m, 3 H), 5.21-5.07 (m, 2 H), 4.22-4.15 (m, 3 H), 3.77 (dd, 1 H,
J = 9.6, 9.6 Hz, H-4), 1.48 (d,
J = 6.2 Hz, 3 H, H-6). Anal. Calcd. for C
25H
24Cl
3NO
7: C, 53.93; H, 4.34; N, 2.52; found: C, 53.79; H, 4.23; N, 2.29.
p-Methoxyphenyl 4-O-allyl-2,3-O-isopropylidene-6-deoxy-α-L-talopyranoside (
21). Compound
20 (4.9 g, 15.8 mmol) was allylated under the same conditions as used for the preparation of
18 from
17, giving
21 (5.1 g, 92%) as a foamy solid;
Rf = 0.73 (4:1 petroleum ether-EtOAc);
-49.1 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 7.01-6.80 (m, 4 H, Bz-
H), 5.93 (m, 1 H, CH
2=C
H-CH
2O), 5.56 (d, 1 H,
J = 1.5 Hz, H-1), 5.29-5.17 (m, 2 H), 4.49 (m, 1 H), 4.34-4.25 (m, 2 H), 4.09-4.00 (m, 2 H), 3.77 (s, 3 H, OC
H3), 3.60 (m, 1 H), 1.59 (s, 3 H, C
H3), 1.40 (s, 3 H, C
H3), 1.31 (d, 3 H,
J = 6.6 Hz, H-6). Anal. Calcd. for C
19H
26O
6: C, 65.13; H, 7.48; found: C, 65.25; H, 7.29.
p-Methoxyphenyl 4-O-allyl-2,3-di-O-benzoyl-6-deoxy-α-L-talopyranoside (
22). Sequential de-
O-isopropylidenation and then benzoylation of compound
21 (7.8 g, 22.3 mmol) under the same conditions as those used for the preparation of
19 from
18, gave
22 (9.3 g, 80%) as a foamy solid;
Rf = 0.67 (3:1 petroleum ether-EtOAc);
-7.7 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.25-7.25 (m, 10 H, Bz-
H), 7.07-6.82 (m, 4 H, MeOC
6H4), 5.93 (m, 1 H, CH
2=C
H-CH
2O), 5.77 (dd, 1 H,
J = 3.49, 3.34 Hz, H-3), 5.68-5.67 (m, 2 H), 5.29-5.12 (m, 2 H), 4.33-4.27 (m, 2 H), 4.07 (m, 1 H), 3.83-3.76 (m, 4 H, CH
2=CH-C
H2O, OC
H3), 1.37 (d,
J = 6.5 Hz, 3 H, H-6); Anal. Calcd. for C
30H
30O
8: C, 69.49; H, 5.83; found: C, 69.63; H, 5.66.
4-O-allyl-2,3-di-O-benzoyl-6-deoxy-α-L-talopyranosyl trichloroacetimidate (
11). Compound
22 (5.0 g, 9.7 mmol) was trichloroacetimidated under the same conditions as used for the preparation of
10 from
19, giving
11 (3.7 g, 70% for two steps) as a foamy solid.
Rf = 0.70 (4:1 petroleum ether-EtOAc);
+6.14 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.74 (s, 1 H, C=N
H), 8.24-7.32 (m, 10 H, Bz-
H), 6.48 (d,
J = 1.4 Hz, 1 H, H-1), 5.90 (m, 1 H), 5.67-5.62 (m, 2 H), 5.18-5.09 (m, 2 H), 4.31-4.07 (m, 2 H), 3.87 (m, 1 H), 3.70 (m, 1 H), 1.44 (d,
J = 6.5 Hz, 3 H, H-6). Anal. Calcd. for C
25H
24Cl
3NO
7: C, 53.93; H, 4.34; N, 2.52; found: C, 53.87; H, 4.15; N, 2.78.
Benzyl oleanolate 3-O-4-O-allyl-2,3-di-O-benzoyl-6-deoxy-α-L-talopyranoside (
23). Compound
11 (4.3 g, 7.8 mmol),
9 [10] (3.6 g, 6.4 mmol) and 4 Å molecular sieves (1.0 g) were added to anhydrous redistilled CH
2Cl
2 (60 mL). TMSOTf (130 μL, 0.7 mmol) was added dropwise at -10 °C under nitrogen protection. The reaction mixture was allowed to raise to rt and stirred for 2 h, and then quenched with Et
3N (2 drops). Filtration of the reaction mixture, concentration of the filtrate, followed by purification of the residue by column chromatography (5:1 petroleum ether-EtOAc) provided
23 (5.2 g, 85%).
Rf= 0.47 (8:1 petroleum ether-EtOAc).
+39.3 (
c 0.5, CHCl
3),
1H-NMR (CDCl
3):
δ 8.23-7.30 (m, 15 H, Ar-
H), 5.88 (m, 1 H, CH
2=C
H-CH
2O), 5.53 (dd, 1 H,
J = 3.4, 3.5 Hz, H-3'), 5.42 (m, 1 H), 5.29 (br s, 1 H, H-12)
, 5.23-5.02 (m, 5 H), 4.32-4.23 (m, 2 H), 4.03 (m, 1 H), 3.76 (s, 1 H, CH
2=CH-C
H2O), 3.17 (dd, 1 H,
J = 5.1, 10.7 Hz, H-3), 2.90 (dd, 1 H,
J = 3.8, 13.7 Hz, H-18), 1.35 (d, 3 H,
J = 6.5 Hz, H-6'), 1.12, 1.01, 0.92, 0.91, 0.89, 0.83, 0.60 (s, 7 × 3 H, C
H3);
13C-NMR (CDCl
3):
δ 177.4, 166.3, 165.6 (3 C=O), 143.7, 136.4, 135.0, 133.1, 133.0, 130.3, 130.1, 129.7, 129.7, 128.4, 128.4, 128.4, 128.4, 128.4, 128.2, 128.2, 128.0, 128.0, 128.0, 127.9, 122.5, 116.7, 100.6 (C-1'), 89.3, 76.4, 74.3, 70.1, 69.0, 66.5, 65.9, 55.4, 47.6, 46.7, 45.9, 41.7, 41.4, 39.3, 39.0, 38.4, 36.7, 33.9, 33.1, 32.7, 32.4, 30.7, 28.3, 27.6, 25.8, 25.2, 23.6, 23.4, 23.1, 18.3, 16.9, 16.5, 16.5, 15.3; Anal. Calcd. for C
60H
76O
9: C, 76.56; H, 8.14; found: C, 76.65; H, 8.31.
Benzyl oleanolate 3-O-2,3-di-O-benzoyl-6-deoxy-α-L-talopyranoside (
16). To a soln of compound
23 (5.0 g, 5.2 mmol) in MeOH-CH
2Cl
2 = 1/1 (50 mL) was added PdCl
2 (304 mg, 1.0 mmol). The mixture was stirred for 12 h, at the end of which time TLC (8:1 petroleum ether-EtOAc) indicated that the reaction was complete. The reaction mixture was diluted with dichloromethane (100 mL), washed with water and satd aq Na
2CO
3. The organic layer was concentrated, and the residue was passed through a short silica gel column with 8:1 petroleum ether-EtOAc as the eluent to give
16 (4.4 g, 92%).
Rf= 0.32 (8:1 petroleum ether-EtOAc).
+45.0 (
c 0.5, CHCl
3),
1H-NMR (CDCl
3):
δ 8.07-7.26 (m, 15 H, Ar-
H), 5.49-5.47 (m, 2 H), 5.29 (br s, 1 H, H-12)
, 5.07 (m, 3 H), 4.32-3.96 (m, 2 H, H-4', H-5'), 3.20 (dd, 1 H,
J = 5.8, 9.8 Hz, H-3), 2.90 (dd, 1 H,
J = 4.4, 13.9 Hz, H-18), 2.55 (d, 1 H,
J = 11.1 Hz, O
H), 1.34 (d, 3 H,
J = 6.5 Hz, H-6'), 1.12, 1.02, 0.92, 0.92, 0.89, 0.85, 0.61 (s, 7 × 3 H, CH
3);
13C-NMR (CDCl
3):
δ 177.4, 165.5, 165.5 (3 C=O), 143.7, 136.5, 133.6, 133.2, 129.8, 129.8, 129.7, 129.7, 129.5, 128.7, 128.7, 128.4, 128.4, 128.3, 128.0, 128.0, 127.9, 127.9, 126.8, 122.5, 100.4 (C-1'), 89.8, 70.6, 70.2, 68.9, 66.7, 65.9, 55.4, 47.6, 46.8, 45.9, 41.7, 41.4, 39.3, 39.0, 38.4, 36.7, 33.8, 33.1, 32.7, 32.4, 30.7, 28.3, 27.6, 25.9, 25.3, 23.6, 23.4, 23.1, 18.3, 16.9, 16.5, 16.2, 15.3; Anal. Calcd. for C
57H
72O
9: C, 75.97; H, 8.05; found: C, 75.83; H, 8.19.
2,3,4,6-Tetra-O-benzoyl-β-D-galactopyranose-(1→3)-1,2:5,6-di-O-isopropylidene-α-D-glucofuranose(25). Compound
12 [
11] (3.87 g, 5.2 mmol) and
24 [16] (1.24 g, 4.8 mmol) were coupled under the same conditions as that used for the preparation of
23 from
11 and
9, giving
25 (3.5 g, 88%) as a foamy solid.
Rf = 0.16 (4:1 petroleum ether-EtOAc);
-61.4 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.09-7.25 (m, 20 H, Bz-
H), 5.99 (dd, 1 H,
J = 0.8, 3.3 Hz), 5.76 (dd, 1 H,
J = 7.9, 10.5 Hz, H-2'), 5.62 (dd, 1 H,
J = 3.4, 10.4 Hz, H-3'), 5.50 (d, 1 H,
J = 3.6 Hz), 4.95 (d, 1 H,
J = 7.9 Hz, H-1'), 4.67 (dd, 1 H,
J = 6.3, 11.1 Hz), 4.50-4.25 (m, 6 H), 4.16-4.03 (m, 2 H), 1.43, 1.42, 1.34, 1.12 (s, 4 × 3 H, CH
3);
13C-NMR (CDCl
3):
δ 166.0, 165.5, 165.5, 164.9 (4 C=O), 133.6, 133.5, 133.3, 133.3, 129.9, 129.9, 129.9, 129.9, 129.9, 129.8, 129.6, 129.6, 129.4, 129.1, 129.0, 128.7, 128.7, 128.6, 128.6, 128.5, 128.5, 128.3, 128.3, 111.9, 108.6, 104.9, 100.6 (2 × C-1), 82.9, 81.8, 80.5, 77.2, 73.1, 71.8, 71.5, 69.9, 68.0, 66.3, 61.9, 26.7, 26.6, 25.9, 25.3; Anal. Calcd. for C
46H
46O
15: C, 65.86; H, 5.53; found: C, 65.72; H, 5.75.
2,3,4,6-Tetra-O-benzoyl-β-D-galactopyranose-(1→3)-1,2-O-isopropylidene-α-D-glucofuranose (
26). The compound
25 (3.0 g) was dissolved in 60% HOAc (100 mL) and stirred for 6 h at 25°C, at the end of which time TLC (2:1 petroleum ether-EtOAc) indicated the completion of the reaction. The mixture was concentrated under reduced pressure and then co evaporated with toluene (2 × 40 mL). The residue was passed through a short silica-gel column with 3:1 petroleum ether-EtOAc as the eluent to give
26 (2.4 g, 83%) as a foamy solid.
Rf = 0.68 (1:1 petroleum ether-EtOAc);
+98.2 (
c 1.0, CHCl
3);
1H-NMR (CDCl
3):
δ 8.08-7.23 (m, 20 H, Bz-
H), 6.01 (d, 1 H,
J = 2.5 Hz), 5.79 (dd, 1 H,
J = 8.0, 10.5 Hz, H-2'), 5.61 (dd, 1 H,
J = 3.4, 10.5 Hz, H-3'), 5.53 (d, 1 H,
J = 3.7 Hz), 4.98 (d, 1 H,
J = 7.9 Hz, H-1'), 4.57 (d, 2 H,
J = 6.1 Hz), 4.50-4.29 (m, 3 H), 4.23 (d, 1 H,
J = 3.7 Hz), 4.19-4.07 (m, 3 H), 3.92-3.85 (m, 1 H), 3.69 (dd, 1 H,
J = 5.7, 11.5 Hz, H-18), 1.42, 1.06 (s, 2 × 3 H, CH
3);
13C- NMR (CDCl
3):
δ 166.1, 165.5, 165.5, 164.8 (4 C=O), 133.8, 133.6, 133.4, 133.4, 133.3, 130.0, 129.9, 129.8, 129.8, 129.8, 129.6, 129.1, 129.0, 129.0, 128.8, 128.8, 128.7, 128.7, 128.6, 128.6, 128.5, 128.3, 128.3, 112.2, 105.2, 101.9 (2 × C-1), 83.6, 83.2, 80.0, 77.2, 72.4, 71.3, 69.5, 68.7, 68.0, 64.4, 62.2, 26.7, 26.2; Anal. Calcd. for C
43H
42O
15: C, 64.66; H, 5.30; found: C, 64.49; H, 5.38.
2,3,4,6-Tetra-O-benzoyl-β-D-galactopyranose-(1→3)-5-aldehyde-1,2-O-isopropylidene-α-D-gluco-furanose(27). To a vigorously stirred suspension of silicagel-supported NaIO
4 reagent which was prepared as the reported method [
17] (2.0 g) in CH
2Cl
2 (5 mL) was added a soln of the compound
26 (0.8 g, 1 mmol) in CH
2Cl
2 (5 mL). The mixture was stirred at rt for 25 min, and TLC (2:1 petroleum ether-EtOAc) indicated that the reaction was complete. The mixture was filtered, and the silica gel was thoroughly washed with CHCl
3. Purification by silica gel chromatography with 2:1 petroleum ether-EtOAc as the eluent afforded
27 (0.7 g, 88%) as a foamy solid.
Rf = 0.41 (2:1 petroleum ether-EtOAc);
+70.2 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 9.68 (d, 1 H,
J = 1.5 Hz, C
HO), 8.08-7.25 (m, 20 H, Bz-
H), 5.97 (dd, 1 H,
J = 0.9, 3.4 Hz), 5.74-5.59 (m, 3 H), 4.89 (d, 1 H,
J = 7.8 Hz, H-1'), 4.70-4.54 (m, 3 H), 4.48-4.30 (m, 3 H), 1.44, 1.18 (s, 2 × 3 H, CH
3);
13C-NMR (CDCl
3):
δ 197.9, 166.0, 165.7, 165.5, 164.8 (5 C=O), 133.7, 133.6, 133.3, 133.3, 130.3, 130.0, 130.0, 129.9, 129.8, 129.8, 129.8, 129.6, 129.6, 129.4, 129.2, 129.1, 129.0, 128.9, 128.8, 128.7, 128.7, 128.6, 128.5, 128.3, 112.8, 105.7, 100.6 (2 × C-1), 83.9, 83.0, 82.9, 77.2, 71.8, 71.5, 69.6, 67.9, 61.9, 26.6, 26.1; Anal. Calcd. for C
43H
40O
14: C, 66.15; H, 5.16; found: C, 66.34; H, 5.25.
2,3,4,6-Tetra-O-benzoyl-β-D-galactopyranose-(1→3)-1,2-O-isopropylidene-β-D-xylose (
28). To a soln of
27 (1.4 g, 1.8 mmol) in 7:3 EtOAc-H
2O (50 mL) at 0
oC was added NaBH
4 (109 mg, 2.7 mmol). The mixture was stirred at 0°C for 15 min, and TLC (3:1 petroleum ether-EtOAc) indicated that the reaction was complete. The aq. soln. was extracted with EtOAc (3 × 100 mL), the extract was washed with 1 M HCl and saturated aq sodium bicarbonate, dried (Na
2SO
4) and concentrated. Purification by silica gel chromatography with 5:1 petroleum ether-EtOAc as the eluent afforded
28 (1.3 g, 96%) as a foamy solid.
Rf = 0.29 (3:2 petroleum ether-EtOAc);
+184.2 (
c 1.0, CHCl
3);
1H-NMR (CDCl
3):
δ 8.08-7.26 (m, 20 H, Bz-
H), 6.00 (dd, 1 H,
J = 0.8, 3.3 Hz), 5.80-5.55 (m, 3 H), 4.96 (d, 1 H,
J = 7.9 Hz, H-1'), 4.70-4.30 (m, 6 H), 4.16-3.91 (m, 2 H), 2.56 (dd, 1 H,
J = 6.7, 6.7 Hz), 1.44, 1.12 (s, 2 × 3 H, CH
3);
13C-NMR (CDCl
3):
δ 166.1, 165.5, 165.5, 164.9 (4 C=O), 133.8, 133.6, 133.4, , 133.4, 130.1, 130.1, 130.0, 130.0, 129.8, 129.8, 129.7, 129.6, 129.2, 129.0, 128.9, 128.8, 128.7, 128.7, 128.7, 128.6, 128.5, 128.5, 128.3, 112.1, 104.9, 101.3 (2 × C-1), 83.6, 82.8, 79.8, 77.2, 72.1, 71.4, 69.6, 68.0, 62.2, 59.9, 26.9, 26.1; Anal. Calcd. for C
42H
40O
14: C, 65.62; H, 5.24; found: C, 65.35; H, 5.37.
2,3,4,6-Tetra-O-benzoyl-β-D-galactopyranose-(1→3)-β-D-xylose (
29). Compound
28 (1.22 g, 1.6 mmol) was dissolved in 4% aq H
2SO
4 (100 mL) and then refluxed for 4 h. TLC (1:1 petroleum ether-EtOAc) indicated that the reaction was complete. The resulting soln. was cooled down to room temperature and extracted three times with EtOAc. The extract was washed with saturated aq. sodium bicarbonate, dried (Na
2SO
4) and concentrated. Purification by silica gel chromatography with 2:1 petroleum ether-EtOAc as the eluent afforded
29 (0.9 g, 85%) as a foamy solid.
Rf = 0.31 (1:1 petroleum ether-EtOAc);
+331.6 (c 1.0, CHCl
3);
1H-NMR (CDCl
3):
δ 8.10-7.25 (m, 20 H, Bz-
H), 6.01 (d, 1 H,
J = 3.3 Hz
), 5.85 (m, 1 H), 5.65 (m, 1 H), 5.07-5.02 (m, 2 H), 4.58-4.40 (m, 3 H), 3.79-3.74 (m, 3 H), 3.50 (m, 1 H), 3.27 (m, 1 H);
13C-NMR (CDCl
3):
δ 166.1, 165.6, 165.5, 165.5 (4 C=O), 133.7, 133.5, 133.4, 133.4, 130.0, 130.0, 129.8, 129.7, 129.1, 129.0, 128.8, 128.8, 128.7, 128.6, 128.5, 128.5, 128.4, 128.3, 102.8, 102.6 (2 × C-1), 97.3, 92.4, 88.2, 85.7, 77.2, 73.4, 72.0, 71.5, 70.7, 70.0, 69.9, 68.2, 68.1, 62.4, 62.0; Anal. Calcd. for C
39H
36O
14: C, 64.28; H, 4.98; found: C, 64.39; H, 4.83.
2,3,4,6-Tetra-O-benzoyl-β-D-galactopyranose-(1→3)-2,4-di-O-benzoyl-β-D-xylopyranosyl trichloro-acetimidate (
15). Compound
29 (3.5 g, 4.8 mmol) was benzoylated under the same conditions as used for the preparation of
19. Then the resultant residue was dissolved in 2 M MeOH-NH
3 (200 mL) and stirred at 35 °C at the end of which time TLC (3:1 petroleum ether-EtOAc) indicated that the reaction was complete. The solvents were evaporated
in vacuo at 50 °C to give a residue, which was dissolved in CH
2Cl
2, and washed with water. The organic phase was dried (Na
2SO
4) and concentrated. Purification by silica gel chromatography with 5:1 petroleum ether-EtOAc as the eluent afforded a foamy residue. The residue was trichloroacetimidated under the same conditions as used for the preparation of
10 from
19, giving
15 (3.5 g, 68% for three steps) as a white foamy solid.
Rf = 0.42 (3:1 petroleum ether-EtOAc);
+18.4 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.52 (s, 1 H, C=N
H), 8.18-7.08 (m, 30 H, Bz-
H ), 6.54 (d, 1 H,
J = 3.5 Hz), 5.87 (d, 1 H,
J = 3.3 Hz), 5.66 (dd, 1 H,
J = 7.9, 10.4 Hz), 5.48-5.37 (m, 2 H), 5.27 (dd, 1 H,
J = 3.5, 9.7 Hz), 5.14 (d, 1 H,
J = 7.9 Hz, H-1'), 4.67 (dd, 1 H,
J = 9.4, 9.4 Hz), 4.41-4.18 (m, 4 H), 3.95 (dd, 1 H,
J = 10.9, 11.0 Hz). Anal. Calcd. for C
55H
44Cl
3NO
16: C, 61.09; H, 4.10; N, 1.30; found: C, 61.34; H, 4.27; N, 1.49.
Benzyl oleanolate 3-O-4-O-allyl-2,3-di-O-benzoyl-α-L-rhamnopyranoside (
30). Compound
10 (4.3 g, 7.8 mmol) and
9 [10] (3.6 g, 6.4 mmol) were coupled under the same conditions as used for the preparation of
23 from
11 and
9, giving
30 (5.4 g, 88%) as a foamy solid.
Rf = 0.45 (8:1 petroleum ether-EtOAc);
+73.7 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.06-7.31 (m, 15 H, Ar-
H), 5.81 (m, 1 H, CH
2=C
H-CH
2O), 5.66 (dd, 1 H,
J = 3.2, 9.5 Hz, H-3'), 5.57 (dd, 1 H,
J = 1.7, 3.2 Hz, H-2'), 5.29 (br s, 1 H, H-12)
, 5.20-5.03 (m, 4 H, PhC
H2, C
H2=CH-CH
2O), 4.97 (d, 1 H,
J1,2 = 1.7 Hz, H-1'), 4.22-4.04 (m, 3 H), 3.67 (dd, 1 H,
J = 9.5, 9.5 Hz, H-4'), 3.15 (dd, 1 H,
J = 6.3, 9.8 Hz, H-3), 2.91 (dd, 1 H,
J = 4.1, 13.4 Hz, H-18), 1.40 (d, 3 H,
J = 6.2 Hz, H-6'), 1.12, 1.02, 0.92, 0.92, 0.89, 0.88, 0.61 (s, 7 × 3H, CH
3);
13C-NMR (CDCl
3):
δ 177.4, 165.5, 165.3 (3 C=O), 143.7, 136.4, 134.5, 133.2, 132.9, 130.0, 130.0, 129.9, 129.7, 129.5, 129.5, 128.4, 128.4, 128.4, 128.4, 128.3, 128.0, 128.0, 127.9, 122.5, 117.2, 99.6 (C-1'), 89.7, 79.1, 77.2, 74.0, 72.5, 71.5, 67.8, 65.9, 55.4, 47.6, 45.9, 41.7, 41.4, 39.3, 39.0, 38.4, 36.7, 33.9, 33.1, 32.7, 32.4, 30.7, 28.3, 27.6, 25.9, 25.3, 23.6, 23.4, 23.1, 18.3, 18.0, 16.9, 16.5, 15.3; Anal. Calcd. for C
60H
76O
9: C, 76.56; H, 8.14; found: C, 76.73; H, 8.43.
Benzyl oleanolate 3-O-2,3-di-O-benzoyl-α-L-rhamnopyranoside (
31). Compound
30 (5.0 g, 5.2 mmol) was deallylated under the same conditions as that used for the preparation of
16 from
23, giving
31 (4.5 g, 94%) as a foamy solid;
Rf = 0.16 (8:1 petroleum ether-EtOAc);
+29.5 (
c 1.0, CHCl
3);
1H- NMR (CDCl
3):
δ 8.09-7.26 (m, 15 H, Ar-
H), 5.57-5.48 (m, 2 H), 5.29 (br s, 1 H, H-12)
, 5.07 (dd, 2 H,
J = 12.6, 17.1 Hz, PhC
H2), 5.00 (d, 1 H,
J = 1.6 Hz, H-1'), 4.06-3.87 (m, 2 H), 3.18 (dd, 1 H,
J = 2.9, 13.0 Hz, H-3), 2.90 (dd, 1 H,
J = 4.4, 14.2 Hz, H-18), 2.49 (d, 1 H,
J = 5.1 Hz, O
H), 1.41 (d, 3 H,
J = 6.1 Hz, H-6'), 1.12, 1.01, 0.92, 0.92, 0.89, 0.87, 0.61 (s, 7 × 3 H, CH
3);
13C-NMR (CDCl
3):
δ 177.4, 166.8, 165.6 (3 C=O), 143.6, 136.4, 133.3, 133.2, 129.7, 129.7, 129.7, 129.7, 129.5, 129.4, 128.4, 128.4, 128.3, 128.3, 127.9, 127.9, 127.9, 127.8, 126.8, 122.4, 99.7 (C-1'), 89.7, 73.4, 72.1, 71.3, 68.7, 65.9, 55.4, 47.5, 46.7, 45.8, 41.6, 41.4, 39.3, 38.9, 38.4, 36.7, 33.8, 33.0, 32.7, 32.3, 30.6, 28.3, 27.6, 25.8, 25.3, 23.6, 23.4, 23.0, 18.2, 17.5, 16.8, 16.5, 15.3; Anal. Calcd. for C
57H
72O
9: C, 75.97; H, 8.05; found: C, 75.81; H, 8.29.
Oleanolic acid 3-O-α-L-rhamnopyranoside (
1). A suspension of
31 (1.3 g, 1.4 mmol) and 10% Pd-C (1.5 g) in EtOAc (30 mL) was refluxed and bubbled up with H
2 (20 mL/min). When TLC (2:1, petroleum-EtOAc) showed that the reaction had completed, Pd-C was removed through filtration and the filtrate was concentrated to dryness. The resulted amorphous solid was dissolved in dry CH
2Cl
2-MeOH (1:2, 30 mL), to which a newly prepared NaOMe/MeOH (1.0 mol/L, 20 mL) was added. The soln was stirred at rt for 2 h and then neutralized with Dowex H
+ resin to pH 7 and filtered. The filtrate was concentrated and subjected to a flash column chromatography (CHCl
3-MeOH-H
2O 7:3:1, organic layer) to give
1 [13] (737 mg, 86% for two steps) as a white powder.
Oleanolic acid 3-O-6-deoxy-α-L-talopyranoside (
2). Compound
2 was prepared from
16 by the same procedure as for
1. Yield: 81%; white powder, m.p. 288-290 °C,
Rf = 0.29 (10:1:0.1 CHCl
3-MeOH-H
2O);
+6.1 (
c 0.5, MeOH);
1H-NMR (pyridine-d
5):
δ 5.47 (br s, 1 H, H-12)
, 5.31 (d, 1 H,
J = 1.3 Hz, H-1'), 4.85 (dd, 1 H,
J = 1.5, 3.0 Hz, H-2'), 4.25-4.21 (m, 2 H), 4.06 (d, 1 H,
J = 1.4 Hz), 3.29 (dd, 1 H,
J = 4.0, 13.7 Hz, H-3), 3.13 (dd, 1 H,
J = 4.3, 11.5 Hz, H-18), 1.54 (d, 3 H,
J = 6.5 Hz, H-6'), 1.28, 1.00, 0.99, 0.95, 0.90, 0.85, 0.80 (s, 7 × 3 H, CH
3);
13C-NMR (pyridine-d
5):
δ 180.2, 144.9, 122.6, 104.9 (C-1'), 88.6, 74.3, 72.4, 67.8, 67.5, 55.7, 48.1, 46.7, 46.6, 42.2, 42.1, 39.8, 39.2, 38.6, 37.1, 34.3, 33.4, 33.3, 33.2, 31.0, 28.4, 28.3, 26.2, 25.8, 23.9, 23.9, 23.8, 18.7, 17.5, 17.4, 16.8, 15.5; HRESIMS:
m/z calcd. for C
36H
58O
7Na[M+Na
+]: 625.4080; found:
m/z 625.4059.
Benzyl oleanolate 3-O-2,3,4,6-tetra-O-benzoyl-β-D-galactopyranoside (
34). Compound
12 (0.56 g, 0.8 mmol) and
9 [
15] (0.6 g, 0.7 mmol) were coupled under the same conditions as that used for the preparation of
23 from
11 and
9, giving
34 [13] (0.9 g, 90%) as a foamy solid.
Oleanolic acid 3-O-β-D-galactopyranoside (
3). Compound
3 [13] was prepared from
34 by the same procedure as for
1. Yield: 84%; white powder.
Benzyl oleanolate 3-O-2,3,4,6-tetra-O-acetyl-α-D-mannopyranoside (
36). Compound
13 [
12] (1.5 g, 3.0 mmol) and
9 [10] (1.4 g, 2.5 mmol) were coupled under the same conditions as used for the preparation of
23 from
11 and
9, giving
36 (1.9 g, 86%) as a foamy solid.
Rf = 0.16 (6:1 petroleum ether-EtOAc);
+70.6 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 7.47-7.27 (m, 5 H, Bn-
H), 5.35-5.24 (m, 3 H), 5.16-5.06 (m, 3 H), 4.97 (d, 1 H,
J = 1.7 Hz, H-1'), 4.25 (dd, 1 H,
J = 5.7, 12.5 Hz, H-3), 4.15-4.10 (m, 2 H), 3.21 (dd, 1 H,
J = 4.0, 11.3 Hz, H-3), 2.90 (dd, 1 H,
J = 4.0, 13.6 Hz, H-18), 2.16, 2.09, 2.05, 2.00 (s, 4 × 3 H, C
H3CO), 1.11, 1.00, 0.92, 0.89, 0.89, 0.82, 0.60 (s, 7 × 3 H, CH
3);
13C- NMR (CDCl
3):
δ 177.4, 170.6, 170.2, 169.9, 169.8 (5 C=O), 143.6, 136.3, 128.3, 128.3, 127.9, 127.9, 122.4, 94.6 (C-1'), 84.7, 77.2, 70.7, 69.2, 69.0, 66.4, 66.3, 65.9, 62.6, 55.6, 47.6, 46.7, 45.8, 41.6, 41.3, 39.3, 38.3, 38.0, 36.8, 33.8, 33.0, 32.7, 32.3, 30.6, 28.7, 27.6, 25.8, 23.6, 23.4, 23.0, 22.1, 20.8, 20.6, 20.6, 18.2, 16.8, 16.4, 15.2; HRESIMS:
m/z calcd. for C
51H
72O
8Na[M+Na
+]: 835.5125; found:
m/z 835.5118.
Oleanolic acid 3-O-α-D-mannopyranoside (
4). Compound
4 was prepared from
36 by the same procedure as for
1. Yield: 87%; white powder, m.p. 250-252 °C,
Rf = 0.07 (20:1:0.1 CHCl
3-MeOH-H
2O);
+79.8 (
c 0.5, MeOH);
1H-NMR (pyridine-d
5):
δ 5.54 (d, 1 H,
J = 1.0 Hz, H-1'), 5.46 (br s, 1 H, H-12), 4.69 (m, 1 H), 4.59-4.50 (m, 3 H), 4.46-4.38 (m, 2 H), 3.47 (dd, 1 H,
J = 4.2, 11.4 Hz, H-3), 3.28 (dd, 1 H,
J = 4.0, 13.5 Hz, H-18), 1.24, 1.15, 1.00, 0.97, 0.94, 0.81, 0.79 (s, 7 × 3 H, CH
3);
13C-NMR (pyridine-d
5):
δ 180.1 (C=O), 144.8, 124.1, 122.4, 97.7 (C-1'), 81.8, 75.8, 73.2, 72.9, 69.2, 63.4, 55.7, 47.9, 46.6, 46.4, 42.1, 41.9, 39.7, 38.5, 38.1, 37.1, 34.2, 33.2, 33.1, 33.1, 30.9, 29.0, 28.2, 26.1, 23.7, 23.6, 22.0, 18.5, 17.3, 16.9, 15.3; HRESIMS:
m/z calcd. for C
36H
58O
8Na[M+Na
+]: 641.4029; found:
m/z 641.4037.
Benzyl oleanolate 3-O-2,3,4-tri-O-benzoyl-β-D-xylopyranosyl-(1→4)-2,3-di-O-benzoyl-6-deoxy-α-L-talopyranoside (
38). Compound
16 (1.1 g, 1.3 mmol) and
14 [13] (0.9 g, 1.5 mmol) were coupled under the same conditions as that used for the preparation of
23 from
11 and
9, giving
38 (1.4 g, 90%) as a foamy solid.
Rf = 0.13 (8:1 petroleum ether-EtOAc);
-24.6 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.33-7.26 (m, 30 H, Ar-
H), 5.67 (dd, 1 H,
J = 8.2, 9.1 Hz, H-2''), 5.58 (dd, 1 H,
J = 6.7, 9.1 Hz, H-3''), 5.48 (d, 1 H,
J = 2.2 Hz, H-1'), 5.40 (dd, 1 H,
J = 3.6, 3.6 Hz, H-3'), 5.28 (br s, 1 H, H-12), 5.07 (dd, 2 H,
J = 12.5, 17.6 Hz, PhC
H2), 4.98-4.92 (m, 2 H), 4.70 (d, 1 H,
J = 6.7 Hz, H-1''), 4.29-4.19 (m, 2 H), 3.50 (m, 1 H), 3.14-3.04 (m, 2 H), 2.89 (dd, 1 H,
J = 4.1, 9.6 Hz, H-18), 1.19 (d, 3 H,
J = 6.5 Hz, H-6'), 1.10, 0.97, 0.91, 0.89, 0.89, 0.81, 0.59 (s, 7 × 3 H, CH
3);
13C-NMR (CDCl
3):
δ 177.4, 166.3, 166.2, 165.6, 165.2, 164.9 (6 C=O), 143.7, 140.9, 138.8, 136.4, 133.3, 133.2, 133.1, 133.0, 130.4, 130.0, 130.0, 129.9, 129.8, 129.7, 129.2, 129.1, 128.6, 128.5, 128.4, 128.4, 128.3, 128.3, 128.3, 128.0, 127.9, 127.8, 127.6, 127.5, 126.9, 122.4, 103.1, 100.7 (2 × C-1), 99.4, 89.5, 78.1, 77.3, 76.6, 76.4, 74.2, 73.7, 72.8, 72.3, 71.8, 71.6, 69.9, 68.6, 68.3, 65.9, 65.6, 65.3, 62.1, 60.2, 55.5, 55.4, 47.5, 46.7, 45.9, 41.7, 41.4, 39.3, 38.9, 38.4, 36.7, 33.1, 32.4, 30.7, 28.3, 27.6, 25.8, 23.6, 23.4, 23.1, 18.2, 16.9, 16.5, 16.1, 15.3; HRESIMS:
m/z calcd. for C
83H
92O
16Na[M+Na
+]: 1367.6283; found:
m/z 1367.6290.
Oleanolic acid 3-O-β-D-xylopyranosyl-(1→4)-6-deoxy-α-L-talopyranoside (
5). Compound
5 was prepared from
38 by the same procedure as for
1. Yield: 71%; white powder, m.p. 218-220 °C,
Rf = 0.11 (10:1:0.1 CHCl
3-MeOH-H
2O);
-30.7 (
c 0.5, MeOH);
1H-NMR (pyridine-d
5):
δ 5.47 (br s, 1 H, H-12), 5.27 (s, 1 H, H-1'), 4.80 (d, 1 H,
J = 7.4 Hz, H-1''), 4.34-4.30 (m, 2 H), 4.25-4.20 (m, 3 H), 4.13-3.93 (m, 3 H), 3.69 (dd, 1 H,
J = 9.6, 10.9 Hz), 3.29 (dd, 1 H,
J = 3.9, 13.6 Hz, H-3), 3.11 (dd, 1 H,
J = 4.3, 11.6 Hz, H-18), 1.70 (d, 3 H,
J = 6.6 Hz, H-6'), 1.29, 1.00, 1.00, 0.95, 0.92, 0.84, 0.79 (s, 7 × 3 H, CH
3);
13C-NMR (pyridine-d
5):
δ 180.1 (C=O), 144.8, 122.4, 106.3, 104.9 (2 × C-1), 88.6, 83.3, 77.8, 74.7, 71.9, 70.5, 67.2, 67.1, 66.7, 55.5, 47.9, 46.6, 46.4, 42.1, 42.0, 39.7, 39.1, 38.4, 36.9, 34.2, 33.2, 33.2, 33.1, 30.9, 28.2, 26.1, 25.6, 23.7, 23.7, 23.7, 23.6, 18.5, 17.3, 17.0, 16.6, 15.4; HRESIMS:
m/z calcd. for C
41H
66O
11Na[M+Na
+]: 757.4503; found:
m/z 757.4515.
Benzyl oleanolate 3-O-2,3,4,6-tetra-O-benzoyl-β-D-galactopyranosyl-(1→4)-2,3-di-O-benzoyl-α-L-rhamnopyranoside (
40). Compound
12 [11] (0.9 g, 1.2 mmol) and
31 (0.9 g, 1.0 mmol) were coupled under the same conditions as that used for the preparation of
23 from
11 and
9, giving
40 (1.3 g, 89%) as a foamy solid.
Rf = 0.07 (8:1 petroleum ether-EtOAc);
+64.5 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.07-7.05 (m, 35 H, Ar-
H), 5.97 (d, 1 H,
J = 3.1 Hz, H-4''), 5.75 (dd, 1 H,
J = 7.9, 10.4 Hz, H-2''), 5.55-5.47 (m, 2 H, H-2', H-3'), 5.41 (dd, 1 H,
J = 3.3, 10.4 Hz, H-3''), 5.30 (br s, 1 H, H-12), 5.13-5.07 (m, 3 H, H-1'', PhC
H2), 4.94 (d, 1 H,
J = 1.4 Hz, H-1'), 4.71-4.37 (m, 3 H), 4.21-4.05 (m, 2 H), 3.14 (dd, 1 H,
J = 7.5, 8.6 Hz, H-3), 2.91 (dd, 1 H,
J = 3.9, 13.7 Hz, H-18), 1.50 (d, 1 H,
J = 6.0 Hz, H-6'), 1.12, 0.96, 0.92, 0.92, 0.89, 0.85, 0.61 (s, 7 × 3 H, CH
3);
13C-NMR (CDCl
3):
δ 177.4, 166.1, 165.5, 165.4, 165.4, 165.3, 164.7 (7 C=O), 143.7, 136.4, 133.5, 133.3, 133.2, 133.1, 132.8, 129.9, 129.7, 129.7, 129.7, 129.6, 129.6, 129.6, 129.6, 129.6, 129.5, 129.5, 129.4, 129.3, 129.0, 128.8, 128.6, 128.6, 128.5, 128.5, 128.4, 128.4, 128.4, 128.4, 128.4, 128.4, 128.4, 128.4, 128.3, 128.2, 128.1, 128.0, 128.0, 128.0, 128.0, 127.9, 122.5, 101.5, 99.8 (2 × C-1), 89.9, 77.6, 77.2, 72.5, 71.9, 71.1, 70.9, 69.7, 68.0, 67.1, 65.9, 62.0, 55.4, 47.6, 46.7, 45.9, 41.7, 41.4, 39.3, 38.9, 38.5, 36.7, 33.8, 33.0, 32.7, 32.4, 30.6, 28.3, 27.6, 25.8, 25.4, 23.6, 23.4, 23.1, 18.2, 18.1, 16.8, 16.5, 15.3; HRESIMS:
m/z calcd. for C
91H
98O
18Na[M+Na
+]: 1501.6651; found:
m/z 1501.6629.
Oleanolic acid 3-O-β-D-galactopyranosyl-(1→4)-α-L-rhamnopyranoside (
6). Compound
6 was prepared from
40 by the same procedure as for
1. Yield: 68%; white powder, m.p. 268-270 °C,
Rf = 0.70 (10:2:0.1 CHCl
3-MeOH-H
2O);
+24.6 (
c 0.5, MeOH);
1H-NMR (pyridine-d
5):
δ 5.46 (br s, 1 H, H-12), 5.27 (s, 1 H, H-1'), 5.18 (d, 1 H,
J = 7.8 Hz, H-1''), 4.60-4.24 (m, 8 H), 4.14 (dd, 1 H,
J = 3.4, 9.5 Hz), 3.95 (dd, 1 H,
J = 6.1, 6.4 Hz, H-2''), 3.29 (dd, 1 H,
J = 4.2, 13.7 Hz, H-3), 3.11 (dd, 1 H,
J = 4.5, 11.6 Hz, H-18),1.74 (d, 3 H,
J = 6.2 Hz, H-6'), 1.27, 1.00, 0.99, 0.95, 0.89, 0.83, 0.76 (s, 7 × 3 H, CH
3);
13C-NMR (pyridine-d
5):
δ 180.1 (C=O), 144.8, 122.7, 122.5, 107.3, 103.9 (2 × C-1), 88.5, 85.2, 76.9, 75.6, 74.1, 72.9, 71.9, 70.0, 68.1, 62.0, 55.5, 47.9, 46.6, 46.4, 42.1, 42.0, 39.7, 39.1, 38.4, 36.9, 34.2, 33.2, 33.2, 33.1, 30.9, 28.3, 28.2, 26.1, 25.7, 23.7, 23.7, 18.5, 18.3, 17.3, 16.7, 15.4; HRESIMS:
m/z calcd. for C
42H
68O
12Na[M+Na
+]: 787.4608; found:
m/z 787.4579.
Benzyl oleanolate 3-O-2,3,4,6-tetra-O-benzoyl-β-D-galactopyranosyl-(1→3)-2,4-di-O-benzoyl-β-D-xylopyranosyl-(1→4)-2,3-di-O-benzoyl-6-deoxy-α-L-talopyranoside (
42). Compound
16 (0.3 g, 0.3 mmol) and
15 (0.41 g, 0.4 mmol) were coupled under the same conditions as used for the preparation of
23 from
11 and
9, giving
42 (0.5 g, 90%) as a foamy solid.
Rf = 0.11 (4:1 petroleum ether-EtOAc);
-26.6 (
c 0.5, CHCl
3);
1H-NMR (CDCl
3):
δ 8.28-7.16 (m, 45 H, Ar-
H), 5.78 (d, 1 H,
J = 3.5 Hz), 5.59 (dd, 1 H,
J = 7.9, 10.4 Hz), 5.47-5.41 (m, 2 H), 5.26-5.20 (m, 2 H), 5.06 (dd, 2 H,
J = 12.5, 17.3 Hz, PhCH
2), 4.93-4.86 (m, 3 H), 4.44 (d, 1 H,
J = 1.4 Hz), 4.39-3.92 (m, 6 H), 3.30 (dd, 1 H,
J = 5.6, 12.1 Hz, H-3), 3.06-2.87 (m, 3 H), 0.99 (d, 1 H,
J = 6.5 Hz, H-6'), 1.09, 0.93, 0.91, 0.89, 0.86, 0.77, 0.58 (s, 7 × 3 H, CH
3);
13C-NMR (CDCl
3)
δ 177.4, 166.3, 166.2, 165.8, 165.4, 165.3, 165.0, 164.9, 163.9 (9 C=O), 143.7, 136.4, 133.3, 133.3, 133.3, 133.2, 133.2, 133.1, 133.0, 132.9, 130.5, 130.0, 129.9, 129.9, 129.8, 129.8, 129.7, 129.7, 129.7, 129.7, 129.7, 129.7, 129.6, 129.6, 129.6, 129.5, 129.5, 129.4, 129.4, 129.4, 129.4, 129.2, 129.0, 128.7, 128.6, 128.5, 128.5, 128.5, 128.5, 128.5, 128.4, 128.4, 128.4, 128.4, 128.4, 128.4, 128.3, 128.3, 128.2, 128.2, 128.1, 128.0, 127.9, 127.9, 127.8, 127.8, 122.4, 103.3, 101.0, 100.6 (3 × C-1), 89.3, 77.3, 73.2, 71.7, 70.9, 70.2, 69.7, 68.5, 68.0, 67.5, 65.9, 65.4, 62.4, 61.2, 55.3, 47.5, 46.7, 45.9, 41.7, 41.4, 39.3, 38.9, 38.3, 36.6, 33.8, 33.0, 32.6, 32.3, 30.6, 28.2, 27.6, 25.8, 25.1, 23.6, 23.3, 23.0, 18.2, 16.8, 16.4, 15.9, 15.3; HRESIMS:
m/z calcd. for C
110H
114O
24Na[M+Na
+]: 1841.7598; found:
m/z 1841.7579.
Oleanolic acid 3-O-β-D-galactopyranosyl-(1→3)-β-D-xylopyranosyl-(1→4)-6-deoxy-α-L-talo-pyranoside (
7). Compound
7 was prepared from
42 by the same procedure as for
1. Yield: 75%; white powder, m.p. 202-204 °C,
Rf = 0.82 (10:2:0.1 CHCl
3-MeOH-H
2O);
-36.8 (
c 0.5, MeOH);
1H- NMR (pyridine-d
5):
δ 5.47 (br s, 1 H, H-12), 5.27-5.25 (m, 2 H), 4.72 (d, 1 H,
J = 7.8 Hz), 4.54-4.50 (m, 2 H), 4.40-3.91 (m, 12 H), 3.85 (dd, 1 H,
J = 7.0, 7.0 Hz), 3.59 (dd, 1 H,
J = 10.2, 11.2 Hz), 3.28 (dd, 1 H,
J = 4.2, 10.0 Hz, H-3), 3.09 (dd, 1 H,
J = 4.4, 11.4 Hz, H-18), 1.67 (d, 3 H,
J = 6.5 Hz, H-6'), 1.28, 1.00, 0.99, 0.95, 0.90, 0.83, 0.78 (s, 7 × 3 H, CH
3);
13C-NMR (pyridine-d
5):
δ 180.2, 144.9, 122.5, 106.3, 105.9, 104.9 (3 × C-1), 88.8, 86.8, 83.6, 77.3, 75.2, 73.5, 73.1, 72.0, 70.2, 69.0, 67.1, 66.7, 66.5, 62.1, 57.4, 55.6, 48.0, 46.7, 46.5, 42.2, 42.1, 39.8, 39.2, 38.5, 37.0, 34.3, 33.3, 33.2, 31.0, 28.4, 28.3, 26.2, 25.7, 23.8, 23.7, 19.2, 18.6, 17.4, 17.0, 16.8, 15.5; HRESIMS:
m/z calcd. for C
47H
76O
16Na[M+Na
+]: 919.5031; found:
m/z 919.5018.