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拟南芥 TRM1-TON1 相互作用揭示了植物皮层微管阵列和真核中心体共有的招募网络。

The Arabidopsis TRM1-TON1 interaction reveals a recruitment network common to plant cortical microtubule arrays and eukaryotic centrosomes.

机构信息

Institut Jean-Pierre Bourgin, Unité Mixte de Recherche 1318, Institut National de la Recherche Agronomique-AgroParisTech, Institut National de la Recherche Agronomique, Centre de Versailles, F-78000 Versailles, France.

出版信息

Plant Cell. 2012 Jan;24(1):178-91. doi: 10.1105/tpc.111.089748. Epub 2012 Jan 27.

Abstract

Land plant cells assemble microtubule arrays without a conspicuous microtubule organizing center like a centrosome. In Arabidopsis thaliana, the TONNEAU1 (TON1) proteins, which share similarity with FOP, a human centrosomal protein, are essential for microtubule organization at the cortex. We have identified a novel superfamily of 34 proteins conserved in land plants, the TON1 Recruiting Motif (TRM) proteins, which share six short conserved motifs, including a TON1-interacting motif present in all TRMs. An archetypal member of this family, TRM1, is a microtubule-associated protein that localizes to cortical microtubules and binds microtubules in vitro. Not all TRM proteins can bind microtubules, suggesting a diversity of functions for this family. In addition, we show that TRM1 interacts in vivo with TON1 and is able to target TON1 to cortical microtubules via its C-terminal TON1 interaction motif. Interestingly, three motifs of TRMs are found in CAP350, a human centrosomal protein interacting with FOP, and the C-terminal M2 motif of CAP350 is responsible for FOP recruitment at the centrosome. Moreover, we found that TON1 can interact with the human CAP350 M2 motif in yeast. Taken together, our results suggest conservation of eukaryotic centrosomal components in plant cells.

摘要

陆生植物细胞在没有中心体等明显微管组织中心的情况下组装微管阵列。在拟南芥中,TONNEAU1(TON1)蛋白与人类中心体蛋白 FOP 具有相似性,对于皮层处的微管组织是必需的。我们鉴定了一个新的陆生植物保守的 34 蛋白超家族,TON1 募集基序(TRM)蛋白,它们共享六个短保守基序,包括所有 TRMs 中都存在的 TON1 相互作用基序。该家族的典型成员 TRM1 是一种微管相关蛋白,它定位于皮层微管上,并在体外结合微管。并非所有 TRM 蛋白都能结合微管,这表明该家族具有多种功能。此外,我们还表明 TRM1 在体内与 TON1 相互作用,并且能够通过其 C 末端 TON1 相互作用基序将 TON1 靶向皮层微管。有趣的是,TRMs 的三个基序存在于与人 FOP 相互作用的人类中心体蛋白 CAP350 中,并且 CAP350 的 C 末端 M2 基序负责 FOP 在中心体处的募集。此外,我们发现 TON1 可以在酵母中与人类 CAP350 M2 基序相互作用。总之,我们的结果表明真核细胞中心体成分在植物细胞中保守。

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