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Transgelin-1 (SM22 alpha) interacts with actin stress fibers and podosomes in smooth muscle cells without using its actin binding site

机译:Transgelin-1(SM22α)与肌动蛋白应激纤维和Podosomes在平滑肌细胞中相互作用,而不使用其肌动蛋白结合位点

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Transgelin-1 (SM22 alpha) has been recognized as a smooth muscle marker and a tumor suppressor, but many details of the working mechanisms remain unclear. Transgelin-1 belongs to the calponin family of actin-binding proteins with an N-terminal calponin homology domain (CH-domain) and a C-terminal calponin-like module (CLIK23). Here, we demonstrate that transgelin-1 interacts with actin stress fibers and podosomes in smooth muscle cells via its type-3 CH-domain, while CLIK23 is dispensable for the binding to the actin structures. We further suggest that the EF-hand motif in transgelin-1 contributes to proper folding of the CH-domain and in turn to the interaction with the actin structures. These results are in contrast to the ones reported in in vitro studies that demonstrated CLIK23 was necessary for the transgelin-1-actin binding, while the CH-domain was not. Besides, within cells, transgelin-1 phosphorylation at Ser181 in CLIK23 did not affect its colocalization with the actin structures, while the same phosphorylation was reported in in vitro studies to negatively regulate actin binding. Thus, our results suggest the molecular basis of intracellular interaction between transgelin-1 and actin, distinct from that in vitro. The actin binding capability intrinsic to CLIK23 may not appear within cells probably because of the weaker competition for actin binding compared to other actin binding molecules. (C) 2018 Elsevier Inc. All rights reserved.
机译:Transgelin-1(SM22α)被认为是平滑的肌肉标记物和肿瘤抑制剂,但是工作机制的许多细节仍然不清楚。 Transgelin-1属于Calponin系列肌动蛋白结合蛋白质,具有N-末端钙萘素同源域(CH-结构域)和C末端钙萘素样模块(CLIK23)。在此,我们证明了转蛋白-1通过其类型-3 CH结构域与肌动蛋白应激纤维和鼠孢子瘤的挥发物瘤相互作用,而CLIK23可分配与肌动蛋白结构的结合。我们进一步表明Transgelin-1中的EF手动图有助于对CH结构域的适当折叠,反过来与肌动蛋白结构的相互作用。这些结果与在体外研究中报道的结果形成对比的是,在体外研究中表明Clik23对于Ch-结构域而言是必需的。此外,在细胞内,Clik23中Ser181的Transgelin-1磷酸化并未影响其与肌动蛋白结构的分层化,而在体外研究中报告了相同的磷酸化,以负称肌动蛋白结合。因此,我们的结果表明Transgelin-1和肌动蛋白之间的细胞内相互作用的分子基础,不同于体外的肌动蛋白。肌动蛋白结合能力为Clik23可能不会出现在细胞内可能不是由于与其他肌动蛋白结合分子相比肌动蛋白结合的竞争较弱。 (c)2018年Elsevier Inc.保留所有权利。

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