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类钙调蛋白通过上调肌球蛋白-10增加丝状伪足依赖性细胞运动。

Calmodulin-like protein increases filopodia-dependent cell motility via up-regulation of myosin-10.

作者信息

Bennett Richard D, Mauer Amy S, Strehler Emanuel E

机构信息

Cell Biology and Genetics Program, Mayo Graduate School, Mayo Clinic College of Medicine, Minnesota 55905, USA.

出版信息

J Biol Chem. 2007 Feb 2;282(5):3205-12. doi: 10.1074/jbc.M607174200. Epub 2006 Nov 26.

Abstract

Human calmodulin-like protein (CLP) is an epithelial-specific protein that is expressed during cell differentiation but down-regulated in primary cancers and transformed cell lines. Using stably transfected and inducible HeLa cell lines, we found that CLP expression did not alter the proliferation rate and colony-forming potential of these cells. However, remarkable phenotypic changes were observed in CLP-expressing compared with control cells. Soft agar colonies of CLP-expressing cells had rough boundaries, with peripheral cells migrating away from the colony. Cells expressing CLP displayed a striking increase in the number and length of myosin-10-positive filopodia and showed increased mobility in a wound healing assay. This increase in wound healing capacity was prevented by small interference RNA-mediated down-regulation of myosin-10. Fluorescence microscopy and Western blotting revealed that CLP expression results in up-regulation of its target protein, myosin-10. This up-regulation occurs at the protein level by stabilization of myosin-10. Thus, CLP functions by increasing the stability of myosin-10, leading to enhanced myosin-10 function and a subsequent increase in filopodial dynamics and cell migration. In stratified epithelia, CLP may be required during terminal differentiation to increase myosin-10 function as cells migrate toward the upper layers and establish new adhesive contacts.

摘要

人钙调蛋白样蛋白(CLP)是一种上皮特异性蛋白,在细胞分化过程中表达,但在原发性癌症和转化细胞系中表达下调。利用稳定转染和可诱导的HeLa细胞系,我们发现CLP的表达并未改变这些细胞的增殖速率和集落形成潜力。然而,与对照细胞相比,在表达CLP的细胞中观察到了显著的表型变化。表达CLP的细胞在软琼脂中的集落边界粗糙,周边细胞从集落中迁移出去。表达CLP的细胞中肌球蛋白-10阳性丝状伪足的数量和长度显著增加,并且在伤口愈合实验中显示出迁移能力增强。这种伤口愈合能力的增加被小干扰RNA介导的肌球蛋白-10下调所抑制。荧光显微镜和蛋白质印迹分析表明,CLP的表达导致其靶蛋白肌球蛋白-10上调。这种上调是通过肌球蛋白-10的稳定在蛋白质水平上发生的。因此,CLP通过增加肌球蛋白-10的稳定性发挥作用,导致肌球蛋白-10功能增强,随后丝状伪足动态和细胞迁移增加。在复层上皮中,在终末分化过程中可能需要CLP来增加肌球蛋白-10的功能,以便细胞向上层迁移并建立新的黏附接触。

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