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细胞有丝分裂马达蛋白的化学生物学研究与展望 被引量:1
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作者 刘行 姚雪彪 《科学通报》 EI CAS CSCD 北大核心 2014年第31期3025-3034,共10页
微管马达驱动蛋白(kinesin,简称驱动蛋白)是一类沿着微管的特定方向行走的分子马达蛋白家族,在胞内运输和细胞分裂中扮演着重要角色.为了研究驱动蛋白的时空动力学特征,过去近15年的化学生物学研究发掘了一系列特异性的小分子抑制剂,为... 微管马达驱动蛋白(kinesin,简称驱动蛋白)是一类沿着微管的特定方向行走的分子马达蛋白家族,在胞内运输和细胞分裂中扮演着重要角色.为了研究驱动蛋白的时空动力学特征,过去近15年的化学生物学研究发掘了一系列特异性的小分子抑制剂,为解析驱动蛋白的系统功能提供了有效的工具.由于部分驱动蛋白在实体瘤中活性异常增高,驱动蛋白小分子抑制剂渐渐发展成为癌症化疗的先导化合物.事实上,基于驱动蛋白Eg5(也叫KIF11)和CENP-E(着丝粒结合蛋白E)的小分子抑制剂已经进入Ⅰ期和Ⅱ期临床实验.本文将简介驱动蛋白的小分子抑制剂研究进展及临床转化研究前景. 展开更多
关键词 细胞有丝分裂 微管驱动蛋白 化学生物学 syntelin 癌症
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Mitotic motor CENP-E cooperates with PRC1 in temporal control of central spindle assembly 被引量:4
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作者 Xu Liu Leilei Xu +19 位作者 Junying Li Phil Y.Yao Wanjuan Wang Hazrat Ismail Haowei Wang Bryce Liao Zhihong Yang Tarsha Ward Ke Ruan Jianchun Zhang Quan Wu Ping He Xia Ding Dongmei Wang Chuanhai Fu Zhen Dou Feng Yan Wenwen Wang Xing Liu Xuebiao Yao 《Journal of Molecular Cell Biology》 SCIE CAS CSCD 2020年第8期654-665,共12页
Error-free cell division depends on the accurate assembly of the spindle midzone from dynamic spindle microtubules to ensure chromatid segregation during metaphase-anaphase transition.However,the mechanism underlying ... Error-free cell division depends on the accurate assembly of the spindle midzone from dynamic spindle microtubules to ensure chromatid segregation during metaphase-anaphase transition.However,the mechanism underlying the key transition from the mitotic spindle to central spindle before anaphase onset remains elusive.Given the prevalence of chromosome instability phenotype in gastric tumorigenesis,we developed a strategy to model context-dependent cell division using a combination of light sheet microscope and 3D gastric organoids.Light sheet microscopic image analyses of 3D organoids showed that CENP-E inhibited cells undergoing aberrant metaphase-anaphase transition and exhibiting chromosome segregation errors during mitosis.Highresolution real-time imaging analyses of 2D cell culture revealed that CENP-E inhibited cells undergoing central spindle splitting and chromosome instability phenotype.Using biotinylated syntelin as an affinity matrix,we found that CENP-E forms a complex with PRC1 in mitotic cells.Chemical inhibition of CENP-E in metaphase by syntelin prevented accurate central spindle assembly by perturbing temporal assembly of PRC1 to the midzone.Thus,CENP-E-mediated PRC1 assembly to the central spindle constitutes a temporal switch to organize dynamic kinetochore microtubules into stable midzone arrays.These findings reveal a previously uncharacterized role of CENP-E in temporal control of central spindle assembly.Since CENP-E is absent from yeast,we reasoned that metazoans evolved an elaborate central spindle organization machinery to ensure accurate sister chromatid segregation during anaphase and cytokinesis. 展开更多
关键词 organoids.cell division central spindle CENP-E syntelin PRC1
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