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Non-Muscle Myosin-IIA Is Critical for Podocyte F-Actin Organization, Contractility, and Attenuation of Cell Motility

机译:非肌肉肌苷 - IIa对于泛细胞F-肌动蛋白组织,收缩性和细胞运动衰减至关重要

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Several glomerular pathologies resulting from podocyte injury are linked to genetic variation involving the MYH9 gene, which encodes the heavy chain of nonmuscle myosin-IIA (NM-IIA). However, the functional role of NM-IIA has not been studied extensively in podocytes. We hypothesized that NM-IIA is critical for maintenance of podocyte structure and mechanical function. To test this hypothesis, we studied murine podocytes in vitro subjected to blebbistatin inhibition of NM-II activity, or RNA interference-mediated, isoform-specific ablation of Myh9 gene and protein (NM-IIA) or its paralog Myh10 gene and protein (NM-IIB). Using quantitative immunofluorescence microscopy, traction force microscopy, and attachment and "wound healing" assays, we found that NM-IIA ablation altered podocyte actin cytoskeletal structure and focal adhesion distribution, decreased cell attachment and contractility, and increased cell motility. Blebbistatin treatment had similar effects. NM-IIB ablation produced cells that exhibited poor attachment, but cytoskeletal structural organization, contractility and motility were maintained. These findings indicate that NM-IIA is essential for maintenance of podocyte cytoskeletal structure and mechanical function in vitro, and NM-IIB does not replace it in this role when NM-IIA expression is altered. We conclude that critical podocyte functions may be affected by MYH9 mutations or disease-associated haplotypes. (C) 2016 Wiley Periodicals, Inc.
机译:由泛骨细胞损伤引起的几种肾小球病理与涉及MyH9基因的遗传变异,它们编码了非气体肌蛋白-IIA(NM-IIA)的重链。然而,NM-IIa的功能作用尚未在足粒细胞中进行广泛研究。我们假设NM-IIa对维持多孔结构和机械功能至关重要。为了测试这一假设,我们研究了在体外进行的鼠孔诱变抑制NM-II活性的抑制,或RNA干扰介导,同种型基因和蛋白质(NM-IIA)或其寄生虫MYH10基因和蛋白质(NM -iib)。使用定量免疫荧光显微镜,牵引力显微镜和附着物和“伤口愈合”测定,我们发现NM-IIA消融改变了多粒细胞肌动蛋白细胞骨架结构和局灶性粘附分布,降低细胞附着和收缩性,以及增加的细胞活性。 Blebbistatin治疗有类似的效果。 NM-IIB消融产生的细胞,其表现出差,但细胞骨骼结构组织,收缩性和运动性。这些发现表明,NM-IIA对于维持多粒细胞细胞骨架结构和体外机械功能至关重要,并且当NM-IIa表达改变时,NM-IIB不会在该作用中取代它。我们得出结论,关键的致统称功能可能受到MyH9突变或疾病相关的单倍型的影响。 (c)2016 Wiley期刊,Inc。

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