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A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry

C3 glomerulopathy describes glomerular pathology associated with predominant deposition of complement C3 including dense deposit disease and C3 glomerulonephritis. Familial C3 glomerulonephritis has been associated with rearrangements affecting the complement factor H–related (CFHR) genes. These inc...

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Autores principales: Medjeral-Thomas, Nicholas, Malik, Talat H, Patel, Mitali P, Toth, Tibor, Terence Cook, H, Tomson, Charles, Pickering, Matthew C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3789233/
https://www.ncbi.nlm.nih.gov/pubmed/24067434
http://dx.doi.org/10.1038/ki.2013.348
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author Medjeral-Thomas, Nicholas
Malik, Talat H
Patel, Mitali P
Toth, Tibor
Terence Cook, H
Tomson, Charles
Pickering, Matthew C
author_facet Medjeral-Thomas, Nicholas
Malik, Talat H
Patel, Mitali P
Toth, Tibor
Terence Cook, H
Tomson, Charles
Pickering, Matthew C
author_sort Medjeral-Thomas, Nicholas
collection PubMed
description C3 glomerulopathy describes glomerular pathology associated with predominant deposition of complement C3 including dense deposit disease and C3 glomerulonephritis. Familial C3 glomerulonephritis has been associated with rearrangements affecting the complement factor H–related (CFHR) genes. These include a hybrid CFHR3-1 gene and an internal duplication within the CFHR5 gene. CFHR5 nephropathy, to date, occurred exclusively in patients with Cypriot ancestry, and is associated with a heterozygous internal duplication of the CFHR5 gene resulting in duplication of the exons encoding the first two domains of the CFHR5 protein. Affected individuals possess both the wild-type nine-domain CFHR5 protein (CFHR5(12-9)) and an abnormally large mutant CFHR5 protein in which the initial two protein domains are duplicated (CFHR5(1212-9)). We found CFHR5(1212-9) in association with familial C3 glomerulonephritis in a family without Cypriot ancestry. The genomic rearrangement was distinct from that seen in Cypriot CFHR5 nephropathy. Our findings strengthen the association between CFHR5(1212-9) and familial C3 glomerulonephritis and recommend screening for CFHR5(1212-9) in patients with C3 glomerulopathy irrespective of ethnicity. Since CFHR5(1212-9) can result from at least two genomic rearrangements, screening is most readily achieved through analysis of CFHR5 protein.
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spelling pubmed-37892332014-04-03 A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry Medjeral-Thomas, Nicholas Malik, Talat H Patel, Mitali P Toth, Tibor Terence Cook, H Tomson, Charles Pickering, Matthew C Kidney Int Clinical Investigation C3 glomerulopathy describes glomerular pathology associated with predominant deposition of complement C3 including dense deposit disease and C3 glomerulonephritis. Familial C3 glomerulonephritis has been associated with rearrangements affecting the complement factor H–related (CFHR) genes. These include a hybrid CFHR3-1 gene and an internal duplication within the CFHR5 gene. CFHR5 nephropathy, to date, occurred exclusively in patients with Cypriot ancestry, and is associated with a heterozygous internal duplication of the CFHR5 gene resulting in duplication of the exons encoding the first two domains of the CFHR5 protein. Affected individuals possess both the wild-type nine-domain CFHR5 protein (CFHR5(12-9)) and an abnormally large mutant CFHR5 protein in which the initial two protein domains are duplicated (CFHR5(1212-9)). We found CFHR5(1212-9) in association with familial C3 glomerulonephritis in a family without Cypriot ancestry. The genomic rearrangement was distinct from that seen in Cypriot CFHR5 nephropathy. Our findings strengthen the association between CFHR5(1212-9) and familial C3 glomerulonephritis and recommend screening for CFHR5(1212-9) in patients with C3 glomerulopathy irrespective of ethnicity. Since CFHR5(1212-9) can result from at least two genomic rearrangements, screening is most readily achieved through analysis of CFHR5 protein. Nature Publishing Group 2014-04 2013-09-25 /pmc/articles/PMC3789233/ /pubmed/24067434 http://dx.doi.org/10.1038/ki.2013.348 Text en Copyright © 2014 International Society of Nephrology http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivs 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Clinical Investigation
Medjeral-Thomas, Nicholas
Malik, Talat H
Patel, Mitali P
Toth, Tibor
Terence Cook, H
Tomson, Charles
Pickering, Matthew C
A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry
title A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry
title_full A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry
title_fullStr A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry
title_full_unstemmed A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry
title_short A novel CFHR5 fusion protein causes C3 glomerulopathy in a family without Cypriot ancestry
title_sort novel cfhr5 fusion protein causes c3 glomerulopathy in a family without cypriot ancestry
topic Clinical Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3789233/
https://www.ncbi.nlm.nih.gov/pubmed/24067434
http://dx.doi.org/10.1038/ki.2013.348
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