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Arabidopsis VILLIN1 and VILLIN3 Have Overlapping and Distinct Activities in Actin Bundle Formation and Turnover

机译:拟南芥VILLIN1和VILLIN3在肌动蛋白束形成和周转中具有重叠和不同的活性

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Actin filament bundles are higher-order cytoskeletal structures that are crucial for the maintenance of cellular architecture and cell expansion. They are generated from individual actin filaments by the actions of bundling proteins like fimbrins, LIMs, and villins. However, the molecular mechanisms of dynamic bundle formation and turnover are largely unknown. Villins belong to the villin/gelsolin/fragmin superfamily and comprise at least five isovariants in Arabidopsis thaliana. Different combinations of villin isovariants are coexpressed in various tissues and cells. It is not clear whether these isovariants function together and act redundantly or whether they have unique activities. VILLIN1 (VLN1) is a simple filament-bundling protein and is Ca2+ insensitive. Based on phylogenetic analyses and conservation of Ca2+ binding sites, we predict that VLN3 is a Ca2+-regulated villin capable of severing actin filaments and contributing to bundle turnover. The bundling activity of both isovariants was observed directly with time-lapse imaging and total internal reflection fluorescence (TIRF) microscopy in vitro, and the mechanism mimics the "catch and zipper" action observed in vivo. Using time-lapse TIRF microscopy, we observed and quantified the severing of individual actin filaments by VLN3 at physiological calcium concentrations. Moreover, VLN3 can sever actin filament bundles in the presence of VLN1 when calcium is elevated to micromolar levels. Collectively, these results demonstrate that two villin isovariants have overlapping and distinct activities.
机译:肌动蛋白丝束是较高阶的细胞骨架结构,对维持细胞结构和细胞扩增至关重要。它们是通过捆绑蛋白(如纤维蛋白,LIM和villins)的作用从单个肌动蛋白丝产生的。但是,动态束形成和周转的分子机制在很大程度上是未知的。绒毛菌属于villin / gelsolin / fragmin超家族,在拟南芥中至少包含五个同变体。在各种组织和细胞中共表达维林同变体的不同组合。尚不清楚这些同变体是否一起发挥作用并发挥多余作用,或者它们是否具有独特的活性。 VILLIN1(VLN1)是一种简单的细丝捆扎蛋白,对Ca2 +不敏感。基于系统发育分析和Ca2 +结合位点的保守性,我们预测VLN3是一个Ca2 +调控的villin,能够切断肌动蛋白丝并有助于束周转。在体外通过延时成像和全内反射荧光(TIRF)显微镜直接观察了两个同变体的捆绑活性,其机制模仿了在体内观察到的“捕捉和拉锁”作用。使用延时TIRF显微镜,我们观察并定量了生理钙浓度下VLN3对单个肌动蛋白丝的切断作用。此外,当钙升高至微摩尔水平时,VLN3可以在存在VLN1时切断肌动蛋白丝束。总的来说,这些结果表明两个维林同变体具有重叠且不同的活性。

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