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

机译:TCS1一种微管结合蛋白与KCBP / ZWICHEL相互作用调节拟南芥中Trichome细胞的形状

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摘要

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.
机译:如何控制细胞形状是发育生物学中的一个基本问题,但决定细胞形状的遗传和分子机制尚不清楚。拟南芥毛状体已被用作研究单细胞水平细胞形态的良好模型系统。在这里,我们描述拟南芥中具有减少的毛状体分支数的毛状体细胞形状1(tcs1)突变体。 TCS1编码包含卷曲螺旋域的蛋白质。药理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。进一步的结果表明,TCS1与KCBP / ZWICHEL物理关联,KCBP / ZWICHEL是涉及毛状体分支数调节的微管马达。遗传分析表明,相对于毛状体分支数,kcbp / zwi对tcs1具有上位性。因此,我们的发现定义了一种新型的遗传和分子机制,TCS1与KCBP相互作用,通过影响微管的稳定性来调节毛状细胞的形状。

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