Ado Genyir, Noda Naotaka, Vu Hue T, Perron Amelie, Mahapatra Amarjyoti D, Arista Karla Pineda, Yoshimura Hideaki, Packwood Daniel M, Ishidate Fumiyoshi, Sato Shin-Ichi, Ozawa Takeaki, Uesugi Motonari
Institute for Chemical Research, Kyoto University Uji Kyoto 611-0011 Japan
Graduate School of Medicine, Kyoto University Uji Kyoto 611-0011 Japan.
Chem Sci. 2022 Apr 20;13(19):5760-5766. doi: 10.1039/d1sc07151c. eCollection 2022 May 18.
Phase-separated membraneless organelles or biomolecular condensates play diverse functions in cells, however recapturing their characteristics using small organic molecules has been a challenge. In the present study, cell-lysate-based screening of 843 self-assembling small molecules led to the discovery of a simple organic molecule, named huezole, that forms liquid droplets to selectively sequester tubulin. Remarkably, this small molecule enters cultured human cells and prevents cell mitosis by forming tubulin-concentrating condensates in cells. The present study demonstrates the feasibility of producing a synthetic condensate out of non-peptidic small molecules for exogenous control of cellular processes. The modular structure of huezole provides a framework for designing a class of organelle-emulating small molecules.
相分离的无膜细胞器或生物分子凝聚物在细胞中发挥着多种功能,然而,利用小分子重现它们的特性一直是一项挑战。在本研究中,基于细胞裂解物对843种自组装小分子进行筛选,发现了一种名为huezole的简单有机分子,它能形成液滴以选择性地隔离微管蛋白。值得注意的是,这种小分子进入培养的人类细胞,并通过在细胞中形成微管蛋白浓缩凝聚物来阻止细胞有丝分裂。本研究证明了用非肽类小分子制造合成凝聚物以对外源细胞过程进行控制的可行性。huezole的模块化结构为设计一类模拟细胞器的小分子提供了框架。