Podocyte GSK3 is an evolutionarily conserved critical regulator of kidney function

Glycogen Synthase Kinase 3 (GSK3) has conserved functions across species but its role in the kidney is unclear. Here, the authors show that in the kidney podocyte cell of mice and related nephrocyte in Drosophila that GSK3 is a master regulator of function both during development and in maturity.

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Autores principales: J. A. Hurcombe, P. Hartley, A. C. Lay, L. Ni, J. J. Bedford, J. P. Leader, S. Singh, A. Murphy, C. L. Scudamore, E. Marquez, A. F. Barrington, V. Pinto, M. Marchetti, L.-F. Wong, J. Uney, M. A. Saleem, P. W. Mathieson, S. Patel, R. J. Walker, J. R. Woodgett, S. E. Quaggin, G. I. Welsh, R. J. M. Coward
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/051986d29ba44b0d9f2cf3bc9a46a0bb
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spelling oai:doaj.org-article:051986d29ba44b0d9f2cf3bc9a46a0bb2021-12-02T17:01:45ZPodocyte GSK3 is an evolutionarily conserved critical regulator of kidney function10.1038/s41467-018-08235-12041-1723https://doaj.org/article/051986d29ba44b0d9f2cf3bc9a46a0bb2019-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-08235-1https://doaj.org/toc/2041-1723Glycogen Synthase Kinase 3 (GSK3) has conserved functions across species but its role in the kidney is unclear. Here, the authors show that in the kidney podocyte cell of mice and related nephrocyte in Drosophila that GSK3 is a master regulator of function both during development and in maturity.J. A. HurcombeP. HartleyA. C. LayL. NiJ. J. BedfordJ. P. LeaderS. SinghA. MurphyC. L. ScudamoreE. MarquezA. F. BarringtonV. PintoM. MarchettiL.-F. WongJ. UneyM. A. SaleemP. W. MathiesonS. PatelR. J. WalkerJ. R. WoodgettS. E. QuagginG. I. WelshR. J. M. CowardNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-17 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
J. A. Hurcombe
P. Hartley
A. C. Lay
L. Ni
J. J. Bedford
J. P. Leader
S. Singh
A. Murphy
C. L. Scudamore
E. Marquez
A. F. Barrington
V. Pinto
M. Marchetti
L.-F. Wong
J. Uney
M. A. Saleem
P. W. Mathieson
S. Patel
R. J. Walker
J. R. Woodgett
S. E. Quaggin
G. I. Welsh
R. J. M. Coward
Podocyte GSK3 is an evolutionarily conserved critical regulator of kidney function
description Glycogen Synthase Kinase 3 (GSK3) has conserved functions across species but its role in the kidney is unclear. Here, the authors show that in the kidney podocyte cell of mice and related nephrocyte in Drosophila that GSK3 is a master regulator of function both during development and in maturity.
format article
author J. A. Hurcombe
P. Hartley
A. C. Lay
L. Ni
J. J. Bedford
J. P. Leader
S. Singh
A. Murphy
C. L. Scudamore
E. Marquez
A. F. Barrington
V. Pinto
M. Marchetti
L.-F. Wong
J. Uney
M. A. Saleem
P. W. Mathieson
S. Patel
R. J. Walker
J. R. Woodgett
S. E. Quaggin
G. I. Welsh
R. J. M. Coward
author_facet J. A. Hurcombe
P. Hartley
A. C. Lay
L. Ni
J. J. Bedford
J. P. Leader
S. Singh
A. Murphy
C. L. Scudamore
E. Marquez
A. F. Barrington
V. Pinto
M. Marchetti
L.-F. Wong
J. Uney
M. A. Saleem
P. W. Mathieson
S. Patel
R. J. Walker
J. R. Woodgett
S. E. Quaggin
G. I. Welsh
R. J. M. Coward
author_sort J. A. Hurcombe
title Podocyte GSK3 is an evolutionarily conserved critical regulator of kidney function
title_short Podocyte GSK3 is an evolutionarily conserved critical regulator of kidney function
title_full Podocyte GSK3 is an evolutionarily conserved critical regulator of kidney function
title_fullStr Podocyte GSK3 is an evolutionarily conserved critical regulator of kidney function
title_full_unstemmed Podocyte GSK3 is an evolutionarily conserved critical regulator of kidney function
title_sort podocyte gsk3 is an evolutionarily conserved critical regulator of kidney function
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/051986d29ba44b0d9f2cf3bc9a46a0bb
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