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拟南芥 AUGMIN 亚基 8 是一种微管正端结合蛋白,可促进下胚轴中微管的重定向。

Arabidopsis AUGMIN subunit8 is a microtubule plus-end binding protein that promotes microtubule reorientation in hypocotyls.

机构信息

State Key Laboratory of Plant Physiology and Biochemistry, College of Biological Sciences, China Agricultural University, Beijing 100193, China.

出版信息

Plant Cell. 2013 Jun;25(6):2187-201. doi: 10.1105/tpc.113.113472. Epub 2013 Jun 4.

Abstract

In plant cells, cortical microtubules provide tracks for cellulose-synthesizing enzymes and regulate cell division, growth, and morphogenesis. The role of microtubules in these essential cellular processes depends on the spatial arrangement of the microtubules. Cortical microtubules are reoriented in response to changes in cell growth status and cell shape. Therefore, an understanding of the mechanism that underlies the change in microtubule orientation will provide insight into plant cell growth and morphogenesis. This study demonstrated that AUGMIN subunit8 (AUG8) in Arabidopsis thaliana is a novel microtubule plus-end binding protein that participates in the reorientation of microtubules in hypocotyls when cell elongation slows down. AUG8 bound to the plus ends of microtubules and promoted tubulin polymerization in vitro. In vivo, AUG8 was recruited to the microtubule branch site immediately before nascent microtubules branched out. It specifically associated with the plus ends of growing cortical microtubules and regulated microtubule dynamics, which facilitated microtubule reorientation when microtubules changed their growth trajectory or encountered obstacle microtubules during microtubule reorientation. This study thus reveals a novel mechanism underlying microtubule reorientation that is critical for modulating cell elongation in Arabidopsis.

摘要

在植物细胞中,皮层微管为纤维素合成酶提供了轨道,并调节细胞分裂、生长和形态发生。微管在这些基本细胞过程中的作用取决于微管的空间排列。皮层微管会响应细胞生长状态和细胞形状的变化而重新定向。因此,了解微管取向变化的机制将为植物细胞生长和形态发生提供深入的了解。本研究表明,拟南芥中的 AUGMIN 亚基 8(AUG8)是一种新型的微管正极结合蛋白,参与了下胚轴中微管的重新定向,当细胞伸长减慢时。AUG8 结合在微管的正极上,并在体外促进微管蛋白聚合。在体内,AUG8 在新生微管分支之前被招募到微管分支点。它特异性地与生长中的皮层微管的正极结合,并调节微管动力学,这有助于微管在重新定向时改变生长轨迹或遇到障碍物微管时重新定向。因此,本研究揭示了微管重新定向的一个新机制,对于调节拟南芥细胞伸长至关重要。

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