Institute for Biophysical Dynamics, University of Chicago, Chicago, IL 60637;
Department of Molecular Genetics and Cell Biology, University of Chicago, Chicago, IL 60637.
Proc Natl Acad Sci U S A. 2020 Oct 13;117(41):25532-25542. doi: 10.1073/pnas.2004656117. Epub 2020 Sep 28.
The actin cytoskeleton assembles into diverse load-bearing networks, including stress fibers (SFs), muscle sarcomeres, and the cytokinetic ring to both generate and sense mechanical forces. The LIM (Lin11, Isl- 1, and Mec-3) domain family is functionally diverse, but most members can associate with the actin cytoskeleton with apparent force sensitivity. Zyxin rapidly localizes via its LIM domains to failing SFs in cells, known as strain sites, to initiate SF repair and maintain mechanical homeostasis. The mechanism by which these LIM domains associate with stress fiber strain sites (SFSS) is not known. Additionally, it is unknown how widespread strain sensing is within the LIM protein family. We identify that the LIM domain-containing region of 18 proteins from the Zyxin, Paxillin, Tes, and Enigma proteins accumulate to SFSS. Moreover, the LIM domain region from the fission yeast protein paxillin like 1 (Pxl1) also localizes to SFSS in mammalian cells, suggesting that the strain sensing mechanism is ancient and highly conserved. We then used sequence and domain analysis to demonstrate that tandem LIM domains contribute additively, for SFSS localization. Employing in vitro reconstitution, we show that the LIM domain-containing region from mammalian zyxin and fission yeast Pxl1 binds to mechanically stressed F-actin networks but does not associate with relaxed actin filaments. We propose that tandem LIM domains recognize an F-actin conformation that is rare in the relaxed state but is enriched in the presence of mechanical stress.
肌动蛋白细胞骨架组装成多种承重网络,包括应力纤维 (SFs)、肌节和胞质分裂环,以产生和感知机械力。LIM(Lin11、Isl-1 和 Mec-3)结构域家族功能多样,但大多数成员可以与肌动蛋白细胞骨架结合,具有明显的力敏感性。Zyxin 通过其 LIM 结构域迅速定位于细胞中称为应变部位的失效 SFs,以启动 SF 修复并维持机械平衡。这些 LIM 结构域与应力纤维应变部位 (SFSS) 结合的机制尚不清楚。此外,LIM 蛋白家族中广泛存在应变感应的情况尚不清楚。我们确定 Zyxin、Paxillin、Tes 和 Enigma 蛋白的 18 种蛋白质的 LIM 结构域包含区域聚集在 SFSS 上。此外,来自裂殖酵母蛋白 paxillin like 1 (Pxl1) 的 LIM 结构域区域也在哺乳动物细胞中定位于 SFSS,表明应变感应机制是古老且高度保守的。然后,我们使用序列和结构域分析表明串联 LIM 结构域为 SFSS 定位提供了附加贡献。通过体外重组,我们表明来自哺乳动物 zyxin 和裂殖酵母 Pxl1 的 LIM 结构域包含区域结合到机械应激的 F-actin 网络,但不与松弛的肌动蛋白丝结合。我们提出,串联 LIM 结构域识别一种 F-actin 构象,这种构象在松弛状态下很少见,但在存在机械应力时富集。