| Literature DB >> 18381240 |
Yu Zhao1, Na Guo, Li-Guang Lou, Yu-Wen Cong, Li-Yan Peng, Qin-Shi Zhao.
Abstract
Twenty-one derivatives of taxchinin A (1) andEntities:
Mesh:
Substances:
Year: 2008 PMID: 18381240 PMCID: PMC7126827 DOI: 10.1016/j.bmc.2008.03.041
Source DB: PubMed Journal: Bioorg Med Chem ISSN: 0968-0896 Impact factor: 3.641
Figure 1Structure of taxchinin A (1) and brevifoliol (2).
Scheme 1Reagents and conditions: (a) PDC, CH2Cl2, 1 h; (b) PDC, CH2Cl2, 24 h; (c) TESCl, pyridine; (d) TBDMSCl, imidazole, DMF; (e) PDC, CH2Cl2; (f) HF-pyridine, pyridine.
Scheme 2Reagents and conditions: (a) TsCl, pyridine; (b) PDC, CH2Cl2; (c) NaH, THF; (d) TESCl, pyridine.
Cytotoxicity of taxchinin A, brevifoliol and their derivatives against A549 cell linea
| Compound | IC50 (μM) | Compounds | IC50 (μM) |
|---|---|---|---|
| 60.50 | 3.16 | ||
| NA | NA | ||
| 91.62 | 0.75 | ||
| 1.68 | 46.47 | ||
| NA | 6.17 | ||
| 6.22 | 2.80 | ||
| 31.62 | 2.48 | ||
| 87.33 | 21.52 | ||
| 12.39 | 80.72 | ||
| NA | 17.37 | ||
| 0.48 | 11.27 | ||
| 5.89 | 2.10 |
NA, not active; IC50 values greater than 100 μM were considered as inactive and represented as NA.
Comparision of the coupling constants between H-2 and H-3 of 11 and 15 in acetone-d6 with those of other obtained taxoids
| Compound | Compounds | ||
|---|---|---|---|
| 9.0 | 8.2 | ||
| br d | 8.4 | ||
| 9.2 | 7.1 | ||
| 8.6 | br s | ||
| br s | 9.5 | ||
| 8.7 | s | ||
| s | 8.2 | ||
| 9.1 | br s | ||
| br s | s | ||
| br s | s | ||
| 7.6 | s | ||
| 8.1 |
Predicted activities (PA) from CoMFA models compared with the experimental activities (EA) and the residues (δ)
| Compound | EA | CoMFA | |
|---|---|---|---|
| PA | |||
| 4.22 | 4.14 | 0.08 | |
| 4.04 | 4.09 | −0.05 | |
| 5.77 | 5.73 | 0.04 | |
| 5.21 | 4.80 | 0.41 | |
| 4.50 | 4.53 | −0.03 | |
| 4.06 | 4.11 | −0.05 | |
| 4.91 | 4.87 | 0.04 | |
| 6.32 | 6.33 | −0.01 | |
| 5.23 | 5.33 | −0.10 | |
| 5.50 | 5.06 | 0.44 | |
| 6.12 | 6.11 | 0.01 | |
| 4.33 | 4.71 | −0.38 | |
| 5.21 | 5.24 | −0.03 | |
| 5.55 | 5.63 | −0.08 | |
| 5.61 | 5.50 | 0.11 | |
| 4.67 | 4.49 | 0.18 | |
| 4.76 | 4.69 | 0.07 | |
| 4.95 | 4.44 | 0.51 | |
Compounds of the testing set.
Summary of results from the CoMFA analyses based on the training set and all 18 compounds
| CoMFA | ||
|---|---|---|
| Analyses based on training set | Analyses based on all 18 compounds | |
| 0.642 | 0.540 | |
| 4 | 4 | |
| 0.558 | 0.529 | |
| 0.993 | 0.969 | |
| 272.663 | 101.627 | |
| Steric | 39.5 | 42.6 |
| Electrostatic | 60.5 | 57.4 |
Figure 2(A) Predicted activities (PA) by CoMFA models versus experimental activities (EA) for the compounds in training set and test set. , compounds of the training set; , compounds of the test set. (B) PA by CoMFA models versus EA. The plot report data obtained via a CoMFA model built using all 18 compounds in Table 3.
Figure 3(A) CoMFA steric contour plot; green contours indicate regions where bulky groups increase activity, whereas yellow contours indicate regions where bulky groups decrease activity. (B) CoMFA electrostatic contour plots; blue contours indicate regions where positive charge increases activity, whereas red contours indicate regions where negative charge increases activity.