Loss of Podocyte aPKCλ/ι Causes Polarity Defects and Nephrotic Syndrome

被引:73
作者
Huber, Tobias B. [1 ]
Hartleben, Bjoern [1 ]
Winkelmann, Kirstin [2 ]
Schneider, Lisa [1 ]
Becker, Jan U. [3 ]
Leitges, Michael [4 ]
Walz, Gerd [1 ]
Haller, Hermann [2 ]
Schiffer, Mario [2 ]
机构
[1] Univ Freiburg, Div Renal, D-79106 Freiburg, Germany
[2] Hannover Med Sch, Div Nephrol, Dept Med, D-3000 Hannover, Germany
[3] Hannover Med Sch, Dept Pathol, D-3000 Hannover, Germany
[4] Univ Oslo, Biotechnol Ctr Oslo, Oslo, Norway
来源
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY | 2009年 / 20卷 / 04期
关键词
PROTEIN-KINASE-C; CELL-POLARITY; TRANSGENIC MICE; COMPLEX; DIFFERENTIATION; EXPRESSION; NEPHRIN; PAR6; CYTOSKELETON; EPITHELIA;
D O I
10.1681/ASN.2008080871
中图分类号
R5 [内科学]; R69 [泌尿科学(泌尿生殖系疾病)];
学科分类号
1002 ; 100201 ;
摘要
Atypical protein kinase C (aPKC) is a central component of the evolutionarily conserved Par3-Par6- aPKC complex, one of the fundamental regulators of cell polarity. We recently demonstrated that these proteins interact with Neph-nephrin molecules at the slit diaphragm of the glomerular filtration barrier. Here, we report that podocyte-specific deletion of aPKC lambda/iota in mice results in severe proteinuria, nephrotic syndrome, and death at 4 to 5 wk after birth. Podocyte foot processes of knockout mice developed structural defects, including mislocalization of the slit diaphragm. In the glomerulus, aPKC lambda/iota was primarily expressed in developing glomerular epithelial cells and podocyte foot processes. Interestingly, under physiologic conditions, aPKC lambda/iota translocated from the apical surface to the basolateral side of developing podocytes, and this translocation preceded the development of foot processes and formation of slit diaphragms. Supporting a critical role for aPKC lambda/iota in the maintenance of slit diaphragms and poclocyte foot processes, aPKC lambda/iota associated with the Neph-nephrin slit diaphragm complex and localized to the tips of filopodia and leading edges of cultured podocytes. These results suggest that aPKC signaling is fundamental to glomerular maintenance and development.
引用
收藏
页码:798 / 806
页数:9
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