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WLIM1的LIM结构域定义了一类新的肌动蛋白成束模块。

The LIM domains of WLIM1 define a new class of actin bundling modules.

作者信息

Thomas Clément, Moreau Flora, Dieterle Monika, Hoffmann Céline, Gatti Sabrina, Hofmann Christina, Van Troys Marleen, Ampe Christophe, Steinmetz André

机构信息

Centre de Recherche Public-Santé, Luxembourg, L-1526 Luxembourg.

Centre de Recherche Public-Santé, Luxembourg, L-1526 Luxembourg.

出版信息

J Biol Chem. 2007 Nov 16;282(46):33599-33608. doi: 10.1074/jbc.M703691200. Epub 2007 Sep 7.

Abstract

Actin filament bundling, i.e. the formation of actin cables, is an important process that relies on proteins able to directly bind and cross-link subunits of adjacent actin filaments. Animal cysteine-rich proteins and their plant counterparts are two LIM domain-containing proteins that were recently suggested to define a new family of actin cytoskeleton regulators involved in actin filament bundling. We here identified the LIM domains as responsible for F-actin binding and bundling activities of the tobacco WLIM1. The deletion of one of the two LIM domains reduced significantly, but did not entirely abolish, the ability of WLIM1 to bind actin filaments. Individual LIM domains were found to interact directly with actin filaments, although with a reduced affinity compared with the native protein. Variants lacking the C-terminal or the inter-LIM domain were only weakly affected in their F-actin stabilizing and bundling activities and trigger the formation of thick cables containing tightly packed actin filaments as does the native protein. In contrast, the deletion of one of the two LIM domains negatively impacted both activities and resulted in the formation of thinner and wavier cables. In conclusion, we demonstrate that the LIM domains of WLIM1 are new autonomous actin binding and bundling modules that cooperate to confer WLIM1 high actin binding and bundling activities.

摘要

肌动蛋白丝束集,即肌动蛋白束的形成,是一个重要过程,它依赖于能够直接结合并交联相邻肌动蛋白丝亚基的蛋白质。动物富含半胱氨酸的蛋白质及其植物对应物是两种含LIM结构域的蛋白质,最近有人提出它们定义了一个参与肌动蛋白丝束集的肌动蛋白细胞骨架调节因子新家族。我们在此确定了LIM结构域是烟草WLIM1的F-肌动蛋白结合和束集活性的原因。两个LIM结构域之一的缺失显著降低,但并未完全消除WLIM1结合肌动蛋白丝的能力。发现单个LIM结构域可直接与肌动蛋白丝相互作用,尽管与天然蛋白相比亲和力有所降低。缺乏C末端或LIM结构域间区域的变体在其F-肌动蛋白稳定和束集活性方面仅受到微弱影响,并像天然蛋白一样触发形成包含紧密堆积肌动蛋白丝的粗束。相比之下,两个LIM结构域之一的缺失对这两种活性都有负面影响,并导致形成更细且更弯曲的束。总之,我们证明WLIM1的LIM结构域是新的自主肌动蛋白结合和束集模块,它们协同赋予WLIM1高肌动蛋白结合和束集活性。

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