Podocyte injury and targeting therapy: an update

被引:92
作者
Durvasula, RV [1 ]
Shankland, SJ [1 ]
机构
[1] Univ Washington, Sch Med, Div Nephrol, Dept Med, Seattle, WA 98195 USA
关键词
foot process effacement; glomerular disease; podocyte; proteinuria; slit diaphragm;
D O I
10.1097/01.mnh.0000199012.79670.0b
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
Purpose of review Podocyte injury is a central event in the development of glomerulosclerosis. This review highlights contributions from the past year to our understanding of mechanisms of podocyte injury and implications for potential treatment strategies of glomerular disease. Recent findings Rearrangement of the actin cytoskeleton, the backbone linking the slit diaphragm, apical domain and sole plate, serves as a common denominator during foot process effacement. Reports on the role of synaptopodin and CDK5 on actin dynamics as well as cathepsin L and B7.1 in in subsequent cell migration have expanded our understanding of the podocyte response to injury. Mounting evidence supports an expanding role of the slit diaphragm in signal transduction to mediate downstream cellular responses, including prosurvival effects of the integral proteins nephrin and CD2AP. The discovery that TRPC6 localizes to the slit diaphragm and identification of specific mutations of the transport channel in kindreds of familial focal segmental glomerulosclerosis implicate a causal role for aberrant calcium signaling in podocyte injury. Disruption of the dystroglycan complex, which anchors the podocyte to the underlying basement membrane, in states of foot process effacement may have implications for the recent finding of viable podocytes in the urine in glomerular disease. Summary The resurgence of research in podocyte biology over the past decade underscores the importance of this unique cell in preserving glomerular structure and function. A greater understanding of the complex signaling mechanisms governing podocyte biology in health and disease will ultimately lead to novel therapeutic avenues for treating disorders of the podocyte.
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页码:1 / 7
页数:7
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[1]   Synaptopodin regulates the actin-bundling activity of α-actinin in an isoform-specific manner [J].
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Oh, J ;
Giardino, L ;
Chabanis, S ;
Faul, C ;
Reiser, J ;
Mundel, P .
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[2]   Signaling at the slit diaphragm [J].
Benzing, T .
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[3]   Mice lacking the giant protocadherin mFAT1 exhibit renal slit junction abnormalities and a partially penetrant cyclopia and anophthalmia phenotype [J].
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Allen, ND ;
Ffrench-Constant, C .
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[4]   Activation of a local tissue angiotensin system in podocytes by mechanical strain [J].
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Blonski, M ;
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Pichler, R ;
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[5]   Vascular endothelial growth factor and nephrin interact and reduce apoptosis in human podocytes [J].
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Saleem, MA ;
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Bates, DO ;
Harper, SJ .
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[6]   Rho-ROCK signal pathway regulates microtubule-based process formation of cultured podocytes - Inhibition of ROCK promoted process elongation [J].
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[7]   Reversal of collapsing glomerulopathy in mice with the cyclin-dependent kinase inhibitor CYC202 [J].
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[8]   Limitation of podocyte proliferation improves renal function in experimental crescentic glomerulonephritis [J].
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[9]   Cyclin-dependent kinase 5 is a regulator of podocyte differentiation, proliferation, and morphology [J].
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Petermann, AT ;
Blonski, MJ ;
Krofft, R ;
Takahashi, S ;
Kulkarni, AB ;
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[10]   Podocyte proliferation and differentiation in glomerular disease: role of cell-cycle regulatory proteins [J].
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