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非肌肉肌球蛋白-IIA对于足细胞F-肌动蛋白的组织、收缩性以及细胞运动性的减弱至关重要。

Non-muscle myosin-IIA is critical for podocyte f-actin organization, contractility, and attenuation of cell motility.

作者信息

Bondzie Philip A, Chen Hui A, Cao Mei Zhen, Tomolonis Julie A, He Fangfang, Pollak Martin R, Henderson Joel M

机构信息

Department of Pathology and Laboratory Medicine, Boston Medical Center, Boston University School of Medicine, Boston, Massachusetts.

Department of Nephrology, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China.

出版信息

Cytoskeleton (Hoboken). 2016 Aug;73(8):377-95. doi: 10.1002/cm.21313. Epub 2016 Jul 21.

Abstract

Several glomerular pathologies resulting from podocyte injury are linked to genetic variation involving the MYH9 gene, which encodes the heavy chain of non-muscle 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. © 2016 Wiley Periodicals, Inc.

摘要

几种由足细胞损伤导致的肾小球病变与涉及MYH9基因的遗传变异有关,该基因编码非肌肉肌球蛋白-IIA(NM-IIA)的重链。然而,NM-IIA在足细胞中的功能作用尚未得到广泛研究。我们假设NM-IIA对于维持足细胞结构和机械功能至关重要。为了验证这一假设,我们在体外研究了小鼠足细胞,对其进行了blebbistatin抑制NM-II活性处理,或通过RNA干扰介导的Myh9基因和蛋白(NM-IIA)或其旁系同源物Myh10基因和蛋白(NM-IIB)的亚型特异性缺失处理。使用定量免疫荧光显微镜、牵引力显微镜以及附着和“伤口愈合”试验,我们发现NM-IIA缺失改变了足细胞肌动蛋白细胞骨架结构和粘着斑分布,降低了细胞附着和收缩能力,并增加了细胞运动性。Blebbistatin处理也有类似效果。NM-IIB缺失产生的细胞表现出附着不良,但细胞骨架结构组织、收缩能力和运动性得以维持。这些发现表明,NM-IIA对于体外维持足细胞细胞骨架结构和机械功能至关重要,并且当NM-IIA表达改变时,NM-IIB无法在这一作用中替代它。我们得出结论,关键的足细胞功能可能会受到MYH9突变或疾病相关单倍型的影响。© 2016威利期刊公司

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