Hadzic Ermin, Catillon Marie, Halavatyi Aliaksandr, Medves Sandrine, Van Troys Marleen, Moes Michèle, Baird Michelle A, Davidson Michael W, Schaffner-Reckinger Elisabeth, Ampe Christophe, Friederich Evelyne
Laboratory of Cytoskeleton and Cell Plasticity, Life Sciences Research Unit, University of Luxembourg, Luxemburg, Luxembourg.
Department of Biochemistry, Ghent University, Ghent, Belgium.
PLoS One. 2015 Oct 28;10(10):e0140511. doi: 10.1371/journal.pone.0140511. eCollection 2015.
Focal adhesions are integrin-based structures that link the actin cytoskeleton and the extracellular matrix. They play an important role in various cellular functions such as cell signaling, cell motility and cell shape. To ensure and fine tune these different cellular functions, adhesions are regulated by a large number of proteins. The LIM domain protein zyxin localizes to focal adhesions where it participates in the regulation of the actin cytoskeleton. Because of its interactions with a variety of binding partners, zyxin has been proposed to act as a molecular scaffold. Here, we studied the interaction of zyxin with such a partner: Tes. Similar to zyxin, Tes harbors three highly conserved LIM domains of which the LIM1 domain directly interacts with zyxin. Using different zyxin variants in pull-down assays and ectopic recruitment experiments, we identified the Tes binding site in zyxin and showed that four highly conserved amino acids are crucial for its interaction with Tes. Based upon these findings, we used a zyxin mutant defective in Tes-binding to assess the functional consequences of abrogating the zyxin-Tes interaction in focal adhesions. Performing fluorescence recovery after photobleaching, we showed that zyxin recruits Tes to focal adhesions and modulates its turnover in these structures. However, we also provide evidence for zyxin-independent localization of Tes to focal adhesions. Zyxin increases focal adhesion numbers and reduces focal adhesion lifetimes, but does so independent of Tes. Quantitative analysis showed that the loss of interaction between zyxin and Tes affects the process of cell spreading. We conclude that zyxin influences focal adhesion dynamics, that it recruits Tes and that this interaction is functional in regulating cell spreading.
粘着斑是基于整合素的结构,它将肌动蛋白细胞骨架与细胞外基质连接起来。它们在各种细胞功能中发挥重要作用,如细胞信号传导、细胞运动和细胞形态。为了确保和微调这些不同的细胞功能,粘着斑受到大量蛋白质的调节。LIM结构域蛋白桩蛋白定位于粘着斑,参与肌动蛋白细胞骨架的调节。由于其与多种结合伴侣的相互作用,桩蛋白被认为起着分子支架的作用。在这里,我们研究了桩蛋白与这样一个伴侣:Tes的相互作用。与桩蛋白类似,Tes含有三个高度保守的LIM结构域,其中LIM1结构域直接与桩蛋白相互作用。通过在下拉实验和异位募集实验中使用不同的桩蛋白变体,我们确定了桩蛋白中与Tes的结合位点,并表明四个高度保守的氨基酸对其与Tes的相互作用至关重要。基于这些发现,我们使用了一个在与Tes结合方面有缺陷的桩蛋白突变体来评估在粘着斑中消除桩蛋白-Tes相互作用的功能后果。进行光漂白后的荧光恢复实验,我们表明桩蛋白将Tes募集到粘着斑并调节其在这些结构中的周转。然而,我们也提供了证据表明Tes可以不依赖桩蛋白定位于粘着斑。桩蛋白增加粘着斑数量并减少粘着斑寿命,但这样做与Tes无关。定量分析表明,桩蛋白和Tes之间相互作用的丧失影响细胞铺展过程。我们得出结论,桩蛋白影响粘着斑动力学,它募集Tes,并且这种相互作用在调节细胞铺展中起作用。