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Identification of a Receptor for Extracellular Renalase

BACKGROUND: An increased risk for developing essential hypertension, stroke and diabetes is associated with single nucleotide gene polymorphisms in renalase, a newly described secreted flavoprotein with oxidoreductase activity. Gene deletion causes hypertension, and aggravates acute ischemic kidney...

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Autores principales: Wang, Ling, Velazquez, Heino, Chang, John, Safirstein, Robert, Desir, Gary V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4407985/
https://www.ncbi.nlm.nih.gov/pubmed/25906147
http://dx.doi.org/10.1371/journal.pone.0122932
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author Wang, Ling
Velazquez, Heino
Chang, John
Safirstein, Robert
Desir, Gary V.
author_facet Wang, Ling
Velazquez, Heino
Chang, John
Safirstein, Robert
Desir, Gary V.
author_sort Wang, Ling
collection PubMed
description BACKGROUND: An increased risk for developing essential hypertension, stroke and diabetes is associated with single nucleotide gene polymorphisms in renalase, a newly described secreted flavoprotein with oxidoreductase activity. Gene deletion causes hypertension, and aggravates acute ischemic kidney (AKI) and cardiac injury. Independent of its intrinsic enzymatic activities, extracellular renalase activates MAPK signaling and prevents acute kidney injury (AKI) in wild type (WT) mice. Therefore, we sought to identity the receptor for extracellular renalase. METHODS AND RESULTS: RP-220 is a previously identified, 20 amino acids long renalase peptide that is devoid of any intrinsic enzymatic activity, but it is equally effective as full-length recombinant renalase at protecting against toxic and ischemic injury. Using biotin transfer studies with RP-220 in the human proximal tubular cell line HK-2 and protein identification by mass spectrometry, we identified PMCA4b as a renalase binding protein. This previously characterized plasma membrane ATPase is involved in cell signaling and cardiac hypertrophy. Co-immunoprecipitation and co-immunolocalization confirmed protein-protein interaction between endogenous renalase and PMCA4b. Down-regulation of endogenous PMCA4b expression by siRNA transfection, or inhibition of its enzymatic activity by the specific peptide inhibitor caloxin1b each abrogated RP-220 dependent MAPK signaling and cytoprotection. In control studies, these maneuvers had no effect on epidermal growth factor mediated signaling, confirming specificity of the interaction between PMCA4b and renalase. CONCLUSIONS: PMCA4b functions as a renalase receptor, and a key mediator of renalase dependent MAPK signaling.
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spelling pubmed-44079852015-05-04 Identification of a Receptor for Extracellular Renalase Wang, Ling Velazquez, Heino Chang, John Safirstein, Robert Desir, Gary V. PLoS One Research Article BACKGROUND: An increased risk for developing essential hypertension, stroke and diabetes is associated with single nucleotide gene polymorphisms in renalase, a newly described secreted flavoprotein with oxidoreductase activity. Gene deletion causes hypertension, and aggravates acute ischemic kidney (AKI) and cardiac injury. Independent of its intrinsic enzymatic activities, extracellular renalase activates MAPK signaling and prevents acute kidney injury (AKI) in wild type (WT) mice. Therefore, we sought to identity the receptor for extracellular renalase. METHODS AND RESULTS: RP-220 is a previously identified, 20 amino acids long renalase peptide that is devoid of any intrinsic enzymatic activity, but it is equally effective as full-length recombinant renalase at protecting against toxic and ischemic injury. Using biotin transfer studies with RP-220 in the human proximal tubular cell line HK-2 and protein identification by mass spectrometry, we identified PMCA4b as a renalase binding protein. This previously characterized plasma membrane ATPase is involved in cell signaling and cardiac hypertrophy. Co-immunoprecipitation and co-immunolocalization confirmed protein-protein interaction between endogenous renalase and PMCA4b. Down-regulation of endogenous PMCA4b expression by siRNA transfection, or inhibition of its enzymatic activity by the specific peptide inhibitor caloxin1b each abrogated RP-220 dependent MAPK signaling and cytoprotection. In control studies, these maneuvers had no effect on epidermal growth factor mediated signaling, confirming specificity of the interaction between PMCA4b and renalase. CONCLUSIONS: PMCA4b functions as a renalase receptor, and a key mediator of renalase dependent MAPK signaling. Public Library of Science 2015-04-23 /pmc/articles/PMC4407985/ /pubmed/25906147 http://dx.doi.org/10.1371/journal.pone.0122932 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Wang, Ling
Velazquez, Heino
Chang, John
Safirstein, Robert
Desir, Gary V.
Identification of a Receptor for Extracellular Renalase
title Identification of a Receptor for Extracellular Renalase
title_full Identification of a Receptor for Extracellular Renalase
title_fullStr Identification of a Receptor for Extracellular Renalase
title_full_unstemmed Identification of a Receptor for Extracellular Renalase
title_short Identification of a Receptor for Extracellular Renalase
title_sort identification of a receptor for extracellular renalase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4407985/
https://www.ncbi.nlm.nih.gov/pubmed/25906147
http://dx.doi.org/10.1371/journal.pone.0122932
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