4.7 Article

Distinct functions of Crumbs regulating slit diaphragms and endocytosis in Drosophila nephrocytes

期刊

CELLULAR AND MOLECULAR LIFE SCIENCES
卷 74, 期 24, 页码 4573-4586

出版社

SPRINGER BASEL AG
DOI: 10.1007/s00018-017-2593-y

关键词

Nephrocyte; Podocyte; Crumbs; Moesin; Slit diaphragm; Endocytosis

资金

  1. German research foundation (DFG) [DFG3901/2-1, DFG3901/1-2, SFB699-A13]
  2. [SCHL1845/2-1]
  3. [WE2550/2-2]

向作者/读者索取更多资源

Mammalian podocytes, the key determinants of the kidney's filtration barrier, differentiate from columnar epithelial cells and several key determinants of apical-basal polarity in the conventional epithelia have been shown to regulate podocyte morphogenesis and function. However, little is known about the role of Crumbs, a conserved polarity regulator in many epithelia, for slit-diaphragm formation and podocyte function. In this study, we used Drosophila nephrocytes as model system for mammalian podocytes and identified a conserved function of Crumbs proteins for cellular morphogenesis, nephrocyte diaphragm assembly/maintenance, and endocytosis. Nephrocyte-specific knock-down of Crumbs results in disturbed nephrocyte diaphragm assembly/maintenance and decreased endocytosis, which can be rescued by Drosophila Crumbs as well as human Crumbs2 and Crumbs3, which were both expressed in human podocytes. In contrast to the extracellular domain, which facilitates nephrocyte diaphragm assembly/maintenance, the intracellular FERM-interaction motif of Crumbs is essential for regulating endocytosis. Moreover, Moesin, which binds to the FERM-binding domain of Crumbs, is essential for efficient endocytosis. Thus, we describe here a new mechanism of nephrocyte development and function, which is likely to be conserved in mammalian podocytes.

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