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植物formin AtFH4 与肌动蛋白和微管都相互作用,并含有一个新鉴定的微管结合结构域。

The plant formin AtFH4 interacts with both actin and microtubules, and contains a newly identified microtubule-binding domain.

机构信息

School of Biological and Biomedical Sciences, University of Durham, South Road, Durham DH1 3LE, UK.

出版信息

J Cell Sci. 2010 Apr 15;123(Pt 8):1209-15. doi: 10.1242/jcs.065557. Epub 2010 Mar 23.

Abstract

The dynamic behaviour of the actin cytoskeleton in plants relies on the coordinated action of several classes of actin-binding proteins (ABPs). These ABPs include the plant-specific subfamilies of actin-nucleating formin proteins. The model plant species Arabidopsis thaliana has over 20 formin proteins, all of which contain plant-specific regions in place of the GTPase-binding domain, formin homology (FH)3 domain, and DAD and DID motifs found in many fungal and animal formins. We have identified for the first time a plant-specific region of the membrane-integrated formin AtFH4 that mediates an association with the microtubule cytoskeleton. In vitro analysis shows that this region (named the GOE domain) binds directly to microtubules. Overexpressed AtFH4 accumulates at the endoplasmic reticulum membrane and co-aligns the endoplasmic reticulum with microtubules. The FH1 and FH2 domains of formins are conserved in plants, and we show that these domains of AtFH4 nucleate F-actin. Together, these data suggest that the combination of plant-specific and conserved domains enables AtFH4 to function as an interface between membranes and both major cytoskeletal networks.

摘要

植物肌动蛋白细胞骨架的动态行为依赖于几种肌动蛋白结合蛋白(ABP)的协调作用。这些 ABP 包括肌动蛋白成核formin 蛋白的植物特异性亚家族。模式植物拟南芥有超过 20 种formin 蛋白,它们都含有植物特异性区域,取代了在许多真菌和动物 formin 中发现的 GTPase 结合域、formin 同源(FH)3 结构域以及 DAD 和 DID 基序。我们首次鉴定了膜整合formin AtFH4 的一个植物特异性区域,该区域介导与微管细胞骨架的关联。体外分析表明,该区域(称为 GOE 结构域)可直接与微管结合。过表达的 AtFH4 在内质网膜上积累,并与微管共定位。formin 的 FH1 和 FH2 结构域在植物中是保守的,我们表明 AtFH4 的这些结构域可成核 F-肌动蛋白。综上所述,这些数据表明,植物特异性和保守结构域的结合使 AtFH4 能够作为膜与两个主要细胞骨架网络之间的接口发挥作用。

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