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An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans

Exome sequencing coupled with homozygosity mapping was used to identify a transition mutation (c.794T>C; p.Leu265Ser) in ELMOD3 at the DFNB88 locus that is associated with nonsyndromic deafness in a large Pakistani family, PKDF468. The affected individuals of this family exhibited pre-lingual, se...

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Autores principales: Jaworek, Thomas J., Richard, Elodie M., Ivanova, Anna A., Giese, Arnaud P. J., Choo, Daniel I., Khan, Shaheen N., Riazuddin, Sheikh, Kahn, Richard A., Riazuddin, Saima
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3764207/
https://www.ncbi.nlm.nih.gov/pubmed/24039609
http://dx.doi.org/10.1371/journal.pgen.1003774
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author Jaworek, Thomas J.
Richard, Elodie M.
Ivanova, Anna A.
Giese, Arnaud P. J.
Choo, Daniel I.
Khan, Shaheen N.
Riazuddin, Sheikh
Kahn, Richard A.
Riazuddin, Saima
author_facet Jaworek, Thomas J.
Richard, Elodie M.
Ivanova, Anna A.
Giese, Arnaud P. J.
Choo, Daniel I.
Khan, Shaheen N.
Riazuddin, Sheikh
Kahn, Richard A.
Riazuddin, Saima
author_sort Jaworek, Thomas J.
collection PubMed
description Exome sequencing coupled with homozygosity mapping was used to identify a transition mutation (c.794T>C; p.Leu265Ser) in ELMOD3 at the DFNB88 locus that is associated with nonsyndromic deafness in a large Pakistani family, PKDF468. The affected individuals of this family exhibited pre-lingual, severe-to-profound degrees of mixed hearing loss. ELMOD3 belongs to the engulfment and cell motility (ELMO) family, which consists of six paralogs in mammals. Several members of the ELMO family have been shown to regulate a subset of GTPases within the Ras superfamily. However, ELMOD3 is a largely uncharacterized protein that has no previously known biochemical activities. We found that in rodents, within the sensory epithelia of the inner ear, ELMOD3 appears most pronounced in the stereocilia of cochlear hair cells. Fluorescently tagged ELMOD3 co-localized with the actin cytoskeleton in MDCK cells and actin-based microvilli of LLC-PK1-CL4 epithelial cells. The p.Leu265Ser mutation in the ELMO domain impaired each of these activities. Super-resolution imaging revealed instances of close association of ELMOD3 with actin at the plasma membrane of MDCK cells. Furthermore, recombinant human GST-ELMOD3 exhibited GTPase activating protein (GAP) activity against the Arl2 GTPase, which was completely abolished by the p.Leu265Ser mutation. Collectively, our data provide the first insights into the expression and biochemical properties of ELMOD3 and highlight its functional links to sound perception and actin cytoskeleton.
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spelling pubmed-37642072013-09-13 An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans Jaworek, Thomas J. Richard, Elodie M. Ivanova, Anna A. Giese, Arnaud P. J. Choo, Daniel I. Khan, Shaheen N. Riazuddin, Sheikh Kahn, Richard A. Riazuddin, Saima PLoS Genet Research Article Exome sequencing coupled with homozygosity mapping was used to identify a transition mutation (c.794T>C; p.Leu265Ser) in ELMOD3 at the DFNB88 locus that is associated with nonsyndromic deafness in a large Pakistani family, PKDF468. The affected individuals of this family exhibited pre-lingual, severe-to-profound degrees of mixed hearing loss. ELMOD3 belongs to the engulfment and cell motility (ELMO) family, which consists of six paralogs in mammals. Several members of the ELMO family have been shown to regulate a subset of GTPases within the Ras superfamily. However, ELMOD3 is a largely uncharacterized protein that has no previously known biochemical activities. We found that in rodents, within the sensory epithelia of the inner ear, ELMOD3 appears most pronounced in the stereocilia of cochlear hair cells. Fluorescently tagged ELMOD3 co-localized with the actin cytoskeleton in MDCK cells and actin-based microvilli of LLC-PK1-CL4 epithelial cells. The p.Leu265Ser mutation in the ELMO domain impaired each of these activities. Super-resolution imaging revealed instances of close association of ELMOD3 with actin at the plasma membrane of MDCK cells. Furthermore, recombinant human GST-ELMOD3 exhibited GTPase activating protein (GAP) activity against the Arl2 GTPase, which was completely abolished by the p.Leu265Ser mutation. Collectively, our data provide the first insights into the expression and biochemical properties of ELMOD3 and highlight its functional links to sound perception and actin cytoskeleton. Public Library of Science 2013-09-05 /pmc/articles/PMC3764207/ /pubmed/24039609 http://dx.doi.org/10.1371/journal.pgen.1003774 Text en © 2013 Jaworek 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
Jaworek, Thomas J.
Richard, Elodie M.
Ivanova, Anna A.
Giese, Arnaud P. J.
Choo, Daniel I.
Khan, Shaheen N.
Riazuddin, Sheikh
Kahn, Richard A.
Riazuddin, Saima
An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans
title An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans
title_full An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans
title_fullStr An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans
title_full_unstemmed An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans
title_short An Alteration in ELMOD3, an Arl2 GTPase-Activating Protein, Is Associated with Hearing Impairment in Humans
title_sort alteration in elmod3, an arl2 gtpase-activating protein, is associated with hearing impairment in humans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3764207/
https://www.ncbi.nlm.nih.gov/pubmed/24039609
http://dx.doi.org/10.1371/journal.pgen.1003774
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