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Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis

Activation of the slit diaphragm protein Nephrin induces actin cytoskeletal remodeling resulting in lamellipodia formation in podocytes in vitro in a phosphatidylinositol-3 kinase, focal adhesion kinase, Cas, and Crk1/2-dependent fashion. In mice, podocyte-specific deletion of Crk1/2 prevents or att...

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Autores principales: George, Britta, Fan, Qingfeng, Dlugos, Christopher P., Soofi, Abdulsalam A., Zhang, Jidong, Verma, Rakesh, Park, Tae-Ju, Wong, Hetty, Curran, Tom, Nihalani, Deepak, Holzman, Lawrence B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4040156/
https://www.ncbi.nlm.nih.gov/pubmed/24499776
http://dx.doi.org/10.1038/ki.2013.556
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author George, Britta
Fan, Qingfeng
Dlugos, Christopher P.
Soofi, Abdulsalam A.
Zhang, Jidong
Verma, Rakesh
Park, Tae-Ju
Wong, Hetty
Curran, Tom
Nihalani, Deepak
Holzman, Lawrence B.
author_facet George, Britta
Fan, Qingfeng
Dlugos, Christopher P.
Soofi, Abdulsalam A.
Zhang, Jidong
Verma, Rakesh
Park, Tae-Ju
Wong, Hetty
Curran, Tom
Nihalani, Deepak
Holzman, Lawrence B.
author_sort George, Britta
collection PubMed
description Activation of the slit diaphragm protein Nephrin induces actin cytoskeletal remodeling resulting in lamellipodia formation in podocytes in vitro in a phosphatidylinositol-3 kinase, focal adhesion kinase, Cas, and Crk1/2-dependent fashion. In mice, podocyte-specific deletion of Crk1/2 prevents or attenuates foot process effacement in two models of podocyte injury. This suggests that cellular mechanisms governing lamellipodial protrusion in vitro are similar to those in vivo during foot process effacement. Since Crk1/2 null mice develop and aged normally, we tested whether the Crk1/2 paralog, CrkL, functionally complements Crk1/2 in a podocyte-specific context. Podocyte-specific CrkL null mice, like podocyte-specific Crk1/2 null mice, developed and aged normally but were protected from protamine sulfate-induced foot process effacement. Simultaneous podocyte-specific deletion of Crk1/2 and CrkL resulted in albuminuria detected by six weeks post-partum and associated with altered podocyte process architecture. Nephrin-induced lamellipodia formation in podocytes in vitro was CrkL-dependent. CrkL formed a heterooligomer with Crk2 and, like Crk2, was recruited to tyrosine phosphorylated Nephrin. Thus, Crk1/2 and CrkL are physically-linked, functionally complement each other during podocyte foot process spreading, and together are required for developing typical foot process architecture.
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spelling pubmed-40401562014-12-01 Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis George, Britta Fan, Qingfeng Dlugos, Christopher P. Soofi, Abdulsalam A. Zhang, Jidong Verma, Rakesh Park, Tae-Ju Wong, Hetty Curran, Tom Nihalani, Deepak Holzman, Lawrence B. Kidney Int Article Activation of the slit diaphragm protein Nephrin induces actin cytoskeletal remodeling resulting in lamellipodia formation in podocytes in vitro in a phosphatidylinositol-3 kinase, focal adhesion kinase, Cas, and Crk1/2-dependent fashion. In mice, podocyte-specific deletion of Crk1/2 prevents or attenuates foot process effacement in two models of podocyte injury. This suggests that cellular mechanisms governing lamellipodial protrusion in vitro are similar to those in vivo during foot process effacement. Since Crk1/2 null mice develop and aged normally, we tested whether the Crk1/2 paralog, CrkL, functionally complements Crk1/2 in a podocyte-specific context. Podocyte-specific CrkL null mice, like podocyte-specific Crk1/2 null mice, developed and aged normally but were protected from protamine sulfate-induced foot process effacement. Simultaneous podocyte-specific deletion of Crk1/2 and CrkL resulted in albuminuria detected by six weeks post-partum and associated with altered podocyte process architecture. Nephrin-induced lamellipodia formation in podocytes in vitro was CrkL-dependent. CrkL formed a heterooligomer with Crk2 and, like Crk2, was recruited to tyrosine phosphorylated Nephrin. Thus, Crk1/2 and CrkL are physically-linked, functionally complement each other during podocyte foot process spreading, and together are required for developing typical foot process architecture. 2014-02-05 2014-06 /pmc/articles/PMC4040156/ /pubmed/24499776 http://dx.doi.org/10.1038/ki.2013.556 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
George, Britta
Fan, Qingfeng
Dlugos, Christopher P.
Soofi, Abdulsalam A.
Zhang, Jidong
Verma, Rakesh
Park, Tae-Ju
Wong, Hetty
Curran, Tom
Nihalani, Deepak
Holzman, Lawrence B.
Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis
title Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis
title_full Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis
title_fullStr Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis
title_full_unstemmed Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis
title_short Crk1/2 and CrkL form a hetero-oligomer and functionally complement each other during podocyte morphogenesis
title_sort crk1/2 and crkl form a hetero-oligomer and functionally complement each other during podocyte morphogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4040156/
https://www.ncbi.nlm.nih.gov/pubmed/24499776
http://dx.doi.org/10.1038/ki.2013.556
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