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微管结合蛋白TCS1与KCBP/ZWICHEL相互作用,调控拟南芥毛状体细胞形态。

TCS1, a Microtubule-Binding Protein, Interacts with KCBP/ZWICHEL to Regulate Trichome Cell Shape in Arabidopsis thaliana.

作者信息

Chen Liangliang, Peng Yuancheng, Tian Juan, Wang Xiaohong, Kong Zhaosheng, Mao Tonglin, Yuan Ming, Li Yunhai

机构信息

State Key Laboratory of Plant Cell and Chromosome Engineering, CAS Center for Excellence in Molecular Plant Sciences, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, China.

University of Chinese Academy of Sciences, China.

出版信息

PLoS Genet. 2016 Oct 21;12(10):e1006266. doi: 10.1371/journal.pgen.1006266. eCollection 2016 Oct.

Abstract

How cell shape is controlled is a fundamental question in developmental biology, but the genetic and molecular mechanisms that determine cell shape are largely unknown. Arabidopsis trichomes have been used as a good model system to investigate cell shape at the single-cell level. Here we describe the trichome cell shape 1 (tcs1) mutants with the reduced trichome branch number in Arabidopsis. TCS1 encodes a coiled-coil domain-containing protein. Pharmacological analyses and observations of microtubule dynamics show that TCS1 influences the stability of microtubules. Biochemical analyses and live-cell imaging indicate that TCS1 binds to microtubules and promotes the assembly of microtubules. Further results reveal that TCS1 physically associates with KCBP/ZWICHEL, a microtubule motor involved in the regulation of trichome branch number. Genetic analyses indicate that kcbp/zwi is epistatic to tcs1 with respect to trichome branch number. Thus, our findings define a novel genetic and molecular mechanism by which TCS1 interacts with KCBP to regulate trichome cell shape by influencing the stability of microtubules.

摘要

细胞形状是如何被控制的是发育生物学中的一个基本问题,但是决定细胞形状的遗传和分子机制在很大程度上仍然未知。拟南芥毛状体已被用作在单细胞水平研究细胞形状的良好模型系统。在这里,我们描述了拟南芥中毛状体分支数量减少的毛状体细胞形状1(tcs1)突变体。TCS1编码一种含有卷曲螺旋结构域的蛋白质。药理学分析和微管动力学观察表明,TCS1影响微管的稳定性。生化分析和活细胞成像表明,TCS1与微管结合并促进微管的组装。进一步的结果显示,TCS1与KCBP/ZWICHEL发生物理相互作用,KCBP/ZWICHEL是一种参与调控毛状体分支数量的微管马达蛋白。遗传分析表明,就毛状体分支数量而言,kcbp/zwi对tcs1呈上位性。因此,我们的研究结果定义了一种新的遗传和分子机制,通过该机制TCS1与KCBP相互作用,通过影响微管的稳定性来调控毛状体细胞形状。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40d2/5074588/0057b9e96ba8/pgen.1006266.g001.jpg

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