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靶向微管蛋白 C 末端尾部的带电小分子。

Targeting the tubulin C-terminal tail by charged small molecules.

机构信息

State Key Laboratory of Bioactive Substances and Functions of Natural Medicines & MHC Key Laboratory of Biosynthesis of Natural Products, Institute of Materia Medica, Chinese Academy of Medical Sciences & Peking Union Medical College, 2A Nan Wei Road, Beijing 100050, China.

Department of Biotechnology, Chemistry and Pharmacy, University of Siena, via Aldo Moro 2, Siena 53100, Italy.

出版信息

Org Biomol Chem. 2022 Dec 21;21(1):153-162. doi: 10.1039/d2ob01910h.

Abstract

The disordered tubulin C-terminal tail (CTT), which possesses a higher degree of heterogeneity, is the target for the interaction of many proteins and cellular components. Compared to the seven well-described binding sites of microtubule-targeting agents (MTAs) that localize on the globular tubulin core, tubulin CTT is far less explored. Therefore, tubulin CTT can be regarded as a novel site for the development of MTAs with distinct biochemical and cell biological properties. Here, we designed and synthesized linear and cyclic peptides containing multiple arginines (RRR), which are complementary to multiple acidic residues in tubulin CTT. Some of them showed moderate induction and promotion of tubulin polymerization. The most potent macrocyclic compound 1f was found to bind to tubulin CTT and thus exert its bioactivity. Such RRR containing compounds represent a starting point for the discovery of tubulin CTT-targeting agents with therapeutic potential.

摘要

紊乱的微管蛋白 C 端尾(CTT)具有更高的异质性,是许多蛋白质和细胞成分相互作用的靶标。与定位在球状微管蛋白核心上的七个描述良好的微管靶向剂(MTA)的七个结合位点相比,微管蛋白 CTT 研究得很少。因此,微管蛋白 CTT 可以被视为开发具有独特生化和细胞生物学特性的 MTA 的新靶点。在这里,我们设计并合成了含有多个精氨酸(RRR)的线性和环状肽,这些精氨酸与微管蛋白 CTT 中的多个酸性残基互补。其中一些表现出对微管蛋白聚合的适度诱导和促进。发现最有效的大环化合物 1f 与微管蛋白 CTT 结合并发挥其生物活性。这些含有 RRR 的化合物代表了发现具有治疗潜力的微管蛋白 CTT 靶向剂的起点。

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