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A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence

Premature truncation alleles in the ALMS1 gene are a frequent cause of human Alström syndrome. Alström syndrome is a rare disorder characterized by early obesity and sensory impairment, symptoms shared with other genetic diseases affecting proteins of the primary cilium. ALMS1 localizes to centrosom...

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Autores principales: Li, Guochun, Vega, Raquel, Nelms, Keats, Gekakis, Nicholas, Goodnow, Christopher, McNamara, Peter, Wu, Hua, Hong, Nancy A, Glynne, Richard
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1761047/
https://www.ncbi.nlm.nih.gov/pubmed/17206865
http://dx.doi.org/10.1371/journal.pgen.0030008
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author Li, Guochun
Vega, Raquel
Nelms, Keats
Gekakis, Nicholas
Goodnow, Christopher
McNamara, Peter
Wu, Hua
Hong, Nancy A
Glynne, Richard
author_facet Li, Guochun
Vega, Raquel
Nelms, Keats
Gekakis, Nicholas
Goodnow, Christopher
McNamara, Peter
Wu, Hua
Hong, Nancy A
Glynne, Richard
author_sort Li, Guochun
collection PubMed
description Premature truncation alleles in the ALMS1 gene are a frequent cause of human Alström syndrome. Alström syndrome is a rare disorder characterized by early obesity and sensory impairment, symptoms shared with other genetic diseases affecting proteins of the primary cilium. ALMS1 localizes to centrosomes and ciliary basal bodies, but truncation mutations in Alms1/ALMS1 do not preclude formation of cilia. Here, we show that in vitro knockdown of Alms1 in mice causes stunted cilia on kidney epithelial cells and prevents these cells from increasing calcium influx in response to mechanical stimuli. The stunted-cilium phenotype can be rescued with a 5′ fragment of the Alms1 cDNA, which resembles disease-associated alleles. In a mouse model of Alström syndrome, Alms1 protein can be stably expressed from the mutant allele and is required for cilia formation in primary cells. Aged mice developed specific loss of cilia from the kidney proximal tubules, which is associated with foci of apoptosis or proliferation. As renal failure is a common cause of mortality in Alström syndrome patients, we conclude that this disease should be considered as a further example of the class of renal ciliopathies: wild-type or mutant alleles of the Alström syndrome gene can support normal kidney ciliogenesis in vitro and in vivo, but mutant alleles are associated with age-dependent loss of kidney primary cilia.
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spelling pubmed-17610472007-01-09 A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence Li, Guochun Vega, Raquel Nelms, Keats Gekakis, Nicholas Goodnow, Christopher McNamara, Peter Wu, Hua Hong, Nancy A Glynne, Richard PLoS Genet Research Article Premature truncation alleles in the ALMS1 gene are a frequent cause of human Alström syndrome. Alström syndrome is a rare disorder characterized by early obesity and sensory impairment, symptoms shared with other genetic diseases affecting proteins of the primary cilium. ALMS1 localizes to centrosomes and ciliary basal bodies, but truncation mutations in Alms1/ALMS1 do not preclude formation of cilia. Here, we show that in vitro knockdown of Alms1 in mice causes stunted cilia on kidney epithelial cells and prevents these cells from increasing calcium influx in response to mechanical stimuli. The stunted-cilium phenotype can be rescued with a 5′ fragment of the Alms1 cDNA, which resembles disease-associated alleles. In a mouse model of Alström syndrome, Alms1 protein can be stably expressed from the mutant allele and is required for cilia formation in primary cells. Aged mice developed specific loss of cilia from the kidney proximal tubules, which is associated with foci of apoptosis or proliferation. As renal failure is a common cause of mortality in Alström syndrome patients, we conclude that this disease should be considered as a further example of the class of renal ciliopathies: wild-type or mutant alleles of the Alström syndrome gene can support normal kidney ciliogenesis in vitro and in vivo, but mutant alleles are associated with age-dependent loss of kidney primary cilia. Public Library of Science 2007-01 2007-01-05 /pmc/articles/PMC1761047/ /pubmed/17206865 http://dx.doi.org/10.1371/journal.pgen.0030008 Text en © 2007 Li et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Li, Guochun
Vega, Raquel
Nelms, Keats
Gekakis, Nicholas
Goodnow, Christopher
McNamara, Peter
Wu, Hua
Hong, Nancy A
Glynne, Richard
A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence
title A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence
title_full A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence
title_fullStr A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence
title_full_unstemmed A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence
title_short A Role for Alström Syndrome Protein, Alms1, in Kidney Ciliogenesis and Cellular Quiescence
title_sort role for alström syndrome protein, alms1, in kidney ciliogenesis and cellular quiescence
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1761047/
https://www.ncbi.nlm.nih.gov/pubmed/17206865
http://dx.doi.org/10.1371/journal.pgen.0030008
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