Cargando…

A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury

INTRODUCTION: Tubular dysfunction is characteristic of Dent’s disease; however, focal segmental glomerulosclerosis (FSGS) can also be present. Glomerulosclerosis could be secondary to tubular injury, but it remains uncertain whether the CLCN5 gene, which encodes an endosomal chloride and/or hydrogen...

Descripción completa

Detalles Bibliográficos
Autores principales: Solanki, Ashish K., Arif, Ehtesham, Morinelli, Thomas, Wilson, Robert C., Hardiman, Gary, Deng, Peifeng, Arthur, John M., Velez, Juan CQ, Nihalani, Deepak, Janech, Michael G., Budisavljevic, Milos N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6224352/
https://www.ncbi.nlm.nih.gov/pubmed/30426109
http://dx.doi.org/10.1016/j.ekir.2018.06.003
_version_ 1783369579606573056
author Solanki, Ashish K.
Arif, Ehtesham
Morinelli, Thomas
Wilson, Robert C.
Hardiman, Gary
Deng, Peifeng
Arthur, John M.
Velez, Juan CQ
Nihalani, Deepak
Janech, Michael G.
Budisavljevic, Milos N.
author_facet Solanki, Ashish K.
Arif, Ehtesham
Morinelli, Thomas
Wilson, Robert C.
Hardiman, Gary
Deng, Peifeng
Arthur, John M.
Velez, Juan CQ
Nihalani, Deepak
Janech, Michael G.
Budisavljevic, Milos N.
author_sort Solanki, Ashish K.
collection PubMed
description INTRODUCTION: Tubular dysfunction is characteristic of Dent’s disease; however, focal segmental glomerulosclerosis (FSGS) can also be present. Glomerulosclerosis could be secondary to tubular injury, but it remains uncertain whether the CLCN5 gene, which encodes an endosomal chloride and/or hydrogen exchanger, plays a role in podocyte biology. Here, we implicate a role for CLCN5 in podocyte function and pathophysiology. METHODS: Whole exome capture and sequencing of the proband and 5 maternally-related family members was conducted to identify X-linked mutations associated with biopsy-proven FSGS. Human podocyte cultures were used to characterize the mutant phenotype on podocyte function. RESULTS: We identified a novel mutation (L521F) in CLCN5 in 2 members of a Hispanic family who presented with a histologic diagnosis of FSGS and low-molecular-weight proteinuria without hypercalciuria. Presence of CLCN5 was confirmed in cultured human podocytes. Podocytes transfected with the wild-type or the mutant (L521F) CLCN5 constructs showed differential localization. CLCN5 knockdown in podocytes resulted in defective transferrin endocytosis and was associated with decreased cell proliferation and increased cell migration, which are hallmarks of podocyte injury. CONCLUSIONS: The CLCN5 mutation, which causes Dent’s disease, may be associated with FSGS without hyercalcuria and nepthrolithiasis. The present findings supported the hypothesis that CLCN5 participates in protein trafficking in podocytes and plays a critical role in organizing the components of the podocyte slit diaphragm to help maintain normal cell physiology and a functional filtration barrier. In addition to tubular dysfunction, mutations in CLCN5 may also lead to podocyte dysfunction, which results in a histologic picture of FSGS that may be a primary event and not a consequence of tubular damage.
format Online
Article
Text
id pubmed-6224352
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-62243522018-11-13 A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury Solanki, Ashish K. Arif, Ehtesham Morinelli, Thomas Wilson, Robert C. Hardiman, Gary Deng, Peifeng Arthur, John M. Velez, Juan CQ Nihalani, Deepak Janech, Michael G. Budisavljevic, Milos N. Kidney Int Rep Translational Research INTRODUCTION: Tubular dysfunction is characteristic of Dent’s disease; however, focal segmental glomerulosclerosis (FSGS) can also be present. Glomerulosclerosis could be secondary to tubular injury, but it remains uncertain whether the CLCN5 gene, which encodes an endosomal chloride and/or hydrogen exchanger, plays a role in podocyte biology. Here, we implicate a role for CLCN5 in podocyte function and pathophysiology. METHODS: Whole exome capture and sequencing of the proband and 5 maternally-related family members was conducted to identify X-linked mutations associated with biopsy-proven FSGS. Human podocyte cultures were used to characterize the mutant phenotype on podocyte function. RESULTS: We identified a novel mutation (L521F) in CLCN5 in 2 members of a Hispanic family who presented with a histologic diagnosis of FSGS and low-molecular-weight proteinuria without hypercalciuria. Presence of CLCN5 was confirmed in cultured human podocytes. Podocytes transfected with the wild-type or the mutant (L521F) CLCN5 constructs showed differential localization. CLCN5 knockdown in podocytes resulted in defective transferrin endocytosis and was associated with decreased cell proliferation and increased cell migration, which are hallmarks of podocyte injury. CONCLUSIONS: The CLCN5 mutation, which causes Dent’s disease, may be associated with FSGS without hyercalcuria and nepthrolithiasis. The present findings supported the hypothesis that CLCN5 participates in protein trafficking in podocytes and plays a critical role in organizing the components of the podocyte slit diaphragm to help maintain normal cell physiology and a functional filtration barrier. In addition to tubular dysfunction, mutations in CLCN5 may also lead to podocyte dysfunction, which results in a histologic picture of FSGS that may be a primary event and not a consequence of tubular damage. Elsevier 2018-06-18 /pmc/articles/PMC6224352/ /pubmed/30426109 http://dx.doi.org/10.1016/j.ekir.2018.06.003 Text en © 2018 International Society of Nephrology. Published by Elsevier Inc. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Translational Research
Solanki, Ashish K.
Arif, Ehtesham
Morinelli, Thomas
Wilson, Robert C.
Hardiman, Gary
Deng, Peifeng
Arthur, John M.
Velez, Juan CQ
Nihalani, Deepak
Janech, Michael G.
Budisavljevic, Milos N.
A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury
title A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury
title_full A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury
title_fullStr A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury
title_full_unstemmed A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury
title_short A Novel CLCN5 Mutation Associated With Focal Segmental Glomerulosclerosis and Podocyte Injury
title_sort novel clcn5 mutation associated with focal segmental glomerulosclerosis and podocyte injury
topic Translational Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6224352/
https://www.ncbi.nlm.nih.gov/pubmed/30426109
http://dx.doi.org/10.1016/j.ekir.2018.06.003
work_keys_str_mv AT solankiashishk anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT arifehtesham anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT morinellithomas anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT wilsonrobertc anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT hardimangary anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT dengpeifeng anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT arthurjohnm anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT velezjuancq anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT nihalanideepak anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT janechmichaelg anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT budisavljevicmilosn anovelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT solankiashishk novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT arifehtesham novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT morinellithomas novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT wilsonrobertc novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT hardimangary novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT dengpeifeng novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT arthurjohnm novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT velezjuancq novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT nihalanideepak novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT janechmichaelg novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury
AT budisavljevicmilosn novelclcn5mutationassociatedwithfocalsegmentalglomerulosclerosisandpodocyteinjury