PO.CH01.05 · 化学
鬼臼毒素的C-4类似物抑制微管蛋白聚合:用于发现癌症抗有丝分裂疗法的可推广平台
C-4 analogs of podophyllotoxin inhibit tubulin polymerization: A generalizable platform for the discovery of antimitotic therapeutics for cancer
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
抗有丝分裂药物,如鬼臼毒素(podophyllotoxin)及其衍生物,通过靶向细胞分裂最基本机制的一种普遍作用机制发挥作用,并已作为抗癌治疗药物展现出广泛的临床潜力。鉴于鬼臼毒素上C-4羟基的药理学重要性,我们着手建立化学修饰与体外效力之间的构效关系。我们此前报道,增加鬼臼毒素酯类C-4处的位阻对无细胞微管蛋白聚合影响甚微,但会降低对人结肠癌细胞的体外效力。在本研究中,评估了26种新型碳酸酯、氨基甲酸酯和甲硅烷基醚鬼臼毒素类似物在抑制体外细胞活力、细胞周期阻滞、无细胞微管蛋白聚合、免疫荧光成像及对接模型方面的抗增殖活性。在人和小鼠结直肠癌(HCT-116、HT-29、CT-26)、肺癌(A549、Calu-1)、三阴性乳腺癌(MDA-MB-231 P)、肝癌(Hep G2)、卵巢腺癌(SK-OV-3)和胚肾细胞(HEK-293)中,碳酸酯类似物表现出比其氨基甲酸酯对应物更强的抗增殖活性,而甲硅烷基醚类似物表现最差。最值得注意的是,叔丁基碳酸酯表现出最强效的活性,IC50达到或低于个位数纳摩尔范围,而氨基甲酸酯的IC50值大于42 nM。相应地,最强效的类似物也通过流式细胞术表现出强效的细胞周期G2/M阻滞,其中叔丁基碳酸酯引起阻滞的百分比最高(69.2%),证实微管蛋白抑制是其主要作用机制。然而,这些差异并未反映在无细胞生化实验中,其中最佳的碳酸酯和氨基甲酸酯显示出相似的微管蛋白抑制百分比(分别为85.78%和85.28%),且未观察到C-4取代基与微管蛋白抑制之间的相关性。此外,计算机模拟建模揭示了各类似物结合亲和力的差异极小,进一步证明C-4官能团化并不直接改变化合物结合微管蛋白的能力。总体而言,我们的结果表明,与微管蛋白的绝对结合并非鬼臼毒素C-4类似物在广泛癌细胞系中生物学活性的主要决定因素,并且C-4处结构变化对生物学效力的影响与logP和位阻无关。总之,所描述的构效关系为未来开发基于鬼臼毒素的癌症抗有丝分裂药物提供了可能。
查看英文原文 English abstract
Antimitotic agents, such as podophyllotoxin and its derivatives, act through a ubiquitous mechanism of action by targeting the most fundamental mechanisms of cell division, and have demonstrated broad clinical potential as anticancer therapeutics. Given the pharmacological importance of the C-4 hydroxyl on podophyllotoxin, we sought to establish a structure-activity relationship between chemical modification and in vitro potency. We previously reported that increased C-4 sterics of podophyllotoxin esters have minimal effect on cell-free tubulin polymerization, yet decrease in vitro potency against human colon cancer cells. In this study, the antiproliferative activity of 26 novel carbonate, carbamate, and silyl ether podophyllotoxin analogs was evaluated for inhibition of in vitro cell viability, cell cycle arrest, cell-free tubulin polymerization, immunofluorescence imaging, and docking models. In human and murine colorectal cancer (HCT-116, HT-29, CT-26), lung cancer (A549, Calu-1), triple-negative breast cancer (MDA-MB-231 P), liver carcinoma (Hep G2), ovarian adenocarcinoma (SK-OV-3), and embryonic kidney cells (HEK-293), the carbonate analogs exhibited greater antiproliferative activity when compared to their carbamate counterparts, while the silyl ether analogs performed the poorest. Most notably, the t-butyl carbonate exhibited the most potent activity with IC50 at or below single digit nanomolar ranges, while the carbamates exhibited IC50 values greater than 42 nM. Correspondingly, the most potent analogs also exhibited potent cell cycle G2/M arrest by flow cytometry, with t-butyl carbonate causing arrest to the greatest percentage (69.2%), affirming tubulin inhibition as the primary mechanism of action. However, those differences were not reflected in the cell-free biochemical assay, where the best carbonates and carbamates showed similar percentages of tubulin inhibition (85.78% and 85.28% respectively), and no correlation was observed between C-4 substituent and tubulin inhibition. Additionally, in silico modeling revealed a minimal difference in each analog's binding affinity, providing further evidence that C-4 functionalization does not directly alter a compound's ability to bind to tubulin. Collectively, our results suggest that absolute binding to tubulin is not the primary determinant of biological activity for C-4 analogs of podophyllotoxin across a broad panel of cancer cell lines, and that the impact of structural changes at C-4 on biological potency is agnostic to logP and steric bulk. Altogether, the structure-activity relationship described enables future development of podophyllotoxin-based antimitotic agents for cancer.
利益披露 Disclosure
S. Somani, None..
S. Yang, None..
L. Menta, None..
Y. Xie, None..
A. Gribok, None..
E. Hsen, None..
E. Njoo, None..
G. Johanning, None..
F. Wang-Johanning, None.