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Orchestration of microtubules and the actin cytoskeleton in trichome cell shape determination by a plant-unique kinesin

机译:植物独特的驱动蛋白在毛状体细胞形状测定中微管和肌动蛋白细胞骨架的编排

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摘要

Microtubules (MTs) and actin filaments (F-actin) function cooperatively to regulate plant cell morphogenesis. However, the mechanisms underlying the crosstalk between these two cytoskeletal systems, particularly in cell shape control, remain largely unknown. In this study, we show that introduction of the MyTH4-FERM tandem into KCBP (kinesin-like calmodulin-binding protein) during evolution conferred novel functions. The MyTH4 domain and the FERM domain in the N-terminal tail of KCBP physically bind to MTs and F-actin, respectively. During trichome morphogenesis, KCBP distributes in a specific cortical gradient and concentrates at the branching sites and the apexes of elongating branches, which lack MTs but have cortical F-actin. Further, live-cell imaging and genetic analyses revealed that KCBP acts as a hub integrating MTs and actin filaments to assemble the required cytoskeletal configuration for the unique, polarized diffuse growth pattern during trichome cell morphogenesis. Our findings provide significant insights into the mechanisms underlying cytoskeletal regulation of cell shape determination.>DOI:
机译:微管(MTs)和肌动蛋白丝(F-肌动蛋白)协同作用,调节植物细胞的形态发生。但是,这两个细胞骨架系统之间的串扰的潜在机制,尤其是在细胞形状控制中,仍是未知之数。在这项研究中,我们表明,在进化过程中将MyTH4-FERM串联引入KCBP(驱动蛋白样钙调蛋白结合蛋白)具有新的功能。 KCBP N末端尾部的MyTH4结构域和FERM结构域分别物理结合MT和F-肌动蛋白。在毛状体形态发生过程中,KCBP分布在特定的皮质梯度中,并集中在缺乏MTs但具有皮质F-肌动蛋白的分支部位和延长分支的顶点。此外,活细胞成像和遗传分析显示,KCBP充当整合MT和肌动蛋白丝的枢纽,以在毛状体细胞形态发生过程中组装所需的细胞骨架配置,以形成独特的极化扩散生长模式。我们的发现为深入了解细胞骨架调节细胞形状的机制提供了重要见识。> DOI:

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