Department of Pharmacology, The University of Texas Health Science Center at San Antonio, San Antonio, Texas 78229-3900, United States.
Mays Cancer Center, The University of Texas Health Science Center at San Antonio, San Antonio, Texas 78229-3900, United States.
J Nat Prod. 2021 Jun 25;84(6):1799-1805. doi: 10.1021/acs.jnatprod.1c00211. Epub 2021 Jun 10.
The C-22,23-epoxy taccalonolides are microtubule stabilizers that bind covalently to β-tubulin with a high degree of specificity. We semisynthesized and performed biochemical and cellular evaluations on 20 taccalonolide analogues designed to improve target engagement. Most notably, modification of C-6 on the taccalonolide backbone with the C-13 -acyl-β-phenylisoserine side chain of paclitaxel provided compounds with 10-fold improved potency for biochemical tubulin polymerization as compared to that of the unmodified epoxy taccalonolide AJ. Covalent docking demonstrated that the C-13 paclitaxel side chain occupied a binding pocket adjacent to the core taccalonolide pocket near the M-loop of β-tubulin. Although paclitaxel-taccalonolide hybrids demonstrated improved in vitro biochemical potency, they retained features of the taccalonolide chemotype, including a lag in tubulin polymerization and high degree of cellular persistence after drug washout associated with covalent binding. Together, these data demonstrate that C-6 modifications can improve the target engagement of this covalent class of microtubule drugs without substantively changing their mechanism of action.
C-22、23-环氧塔卡隆内酯是微管稳定剂,与β-微管蛋白具有高度特异性的共价结合。我们对半合成了 20 种塔卡隆内酯类似物,并对其进行了生化和细胞评估,旨在提高靶标结合。值得注意的是,通过将紫杉醇的 C-13-酰基-β-苯异丝氨酸侧链修饰到塔卡隆内酯骨架的 C-6 位,与未修饰的环氧塔卡隆内酯 AJ 相比,化合物对生化微管蛋白聚合的活性提高了 10 倍。共价对接表明,C-13 紫杉醇侧链占据了与β-微管蛋白 M 环附近核心塔卡隆内酯口袋相邻的结合口袋。尽管紫杉醇-塔卡隆内酯杂化物表现出改善的体外生化效力,但它们保留了塔卡隆内酯化学型的特征,包括微管蛋白聚合的滞后以及与共价结合相关的药物洗脱后细胞内持久性高。这些数据表明,C-6 修饰可以提高这种共价类微管药物的靶标结合,而不会实质性改变其作用机制。