Kidney development and physiology require polarization of epithelia that line renal tubules. Genetic studies show that polarization of invertebrate epithelia requires the crumbs, partition-defective-3, and discs large complexes. These evolutionarily conserved protein complexes occur in mammalian kidney; however, their role in renal development remains poorly defined. Here, we find that mice lacking the small PDZ protein mammalian LIN-7c (MALS-3) have hypomorphic, cystic, and fibrotic kidneys. Proteomic analysis defines MALS-3 as the only known core component of both the crumbs and discs large cell polarity complexes. MALS-3 mediates stable assembly of the crumbs tight junction complex and the discs large basolateral complex, and these complexes are disrupted in renal epithelia from MALS-3 knockout mice. Interestingly, MALS-3 controls apico-basal polarity preferentially in epithelia derived from metanephric mesenchyme, and defects in kidney architecture owe solely to MALS expression in these epithelia. These studies demonstrate that defects in epithelial cell polarization can cause cystic and fibrotic renal disease.
Renal defects associated with improper polarization of the CRB and DLG polarity complexes in MALS-3 knockout mice
O. Olsen and L. Funke contributed equally to this paper.
Abbreviations used in this paper: CRB, Crumbs; DLG, Discs large; LGL, lethal giant larvae; MAGUK, membrane-associated guanylate kinase; MALS-3, mammalian LIN-7c; MMKO, metanephric mesenchyme KO; PALS, proteins associated with LIN-7; PAR-3, partition-defective-3; PATJ, PALS-associated tight junction; SCRIB, scribble; UBKO, ureteric bud KO.
Olav Olsen, Lars Funke, Jia-fu Long, Masaki Fukata, Toshinari Kazuta, Jonathan C. Trinidad, Kimberly A. Moore, Hidemi Misawa, Paul A. Welling, Alma L. Burlingame, Mingjie Zhang, David S. Bredt; Renal defects associated with improper polarization of the CRB and DLG polarity complexes in MALS-3 knockout mice . J Cell Biol 8 October 2007; 179 (1): 151–164. doi: https://doi.org/10.1083/jcb.200702054
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