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HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule

HIV-associated nephropathy (HIVAN) impairs functions of both glomeruli and tubules. Attention has been previously focused on the HIVAN glomerulopathy. Tubular injury has drawn increased attention because sodium wasting is common in hospitalized HIV/AIDS patients. We used viral protein R (Vpr)-transg...

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Autores principales: Shrivastav, Shashi, Lee, Hewang, Okamoto, Koji, Lu, Huiyan, Yoshida, Teruhiko, Latt, Khun Zaw, Wakashin, Hidefumi, Dalgleish, James L. T., Koritzinsky, Erik H., Xu, Peng, Asico, Laureano D., Chung, Joon-Yong, Hewitt, Stephen, Gildea, John J., Felder, Robin A., Jose, Pedro A., Rosenberg, Avi Z., Knepper, Mark A., Kino, Tomoshige, Kopp, Jeffrey B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9491550/
https://www.ncbi.nlm.nih.gov/pubmed/36129874
http://dx.doi.org/10.1371/journal.pone.0273313
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author Shrivastav, Shashi
Lee, Hewang
Okamoto, Koji
Lu, Huiyan
Yoshida, Teruhiko
Latt, Khun Zaw
Wakashin, Hidefumi
Dalgleish, James L. T.
Koritzinsky, Erik H.
Xu, Peng
Asico, Laureano D.
Chung, Joon-Yong
Hewitt, Stephen
Gildea, John J.
Felder, Robin A.
Jose, Pedro A.
Rosenberg, Avi Z.
Knepper, Mark A.
Kino, Tomoshige
Kopp, Jeffrey B.
author_facet Shrivastav, Shashi
Lee, Hewang
Okamoto, Koji
Lu, Huiyan
Yoshida, Teruhiko
Latt, Khun Zaw
Wakashin, Hidefumi
Dalgleish, James L. T.
Koritzinsky, Erik H.
Xu, Peng
Asico, Laureano D.
Chung, Joon-Yong
Hewitt, Stephen
Gildea, John J.
Felder, Robin A.
Jose, Pedro A.
Rosenberg, Avi Z.
Knepper, Mark A.
Kino, Tomoshige
Kopp, Jeffrey B.
author_sort Shrivastav, Shashi
collection PubMed
description HIV-associated nephropathy (HIVAN) impairs functions of both glomeruli and tubules. Attention has been previously focused on the HIVAN glomerulopathy. Tubular injury has drawn increased attention because sodium wasting is common in hospitalized HIV/AIDS patients. We used viral protein R (Vpr)-transgenic mice to investigate the mechanisms whereby Vpr contributes to urinary sodium wasting. In phosphoenolpyruvate carboxykinase promoter-driven Vpr-transgenic mice, in situ hybridization showed that Vpr mRNA was expressed in all nephron segments, including the distal convoluted tubule. Vpr-transgenic mice, compared with wild-type littermates, markedly increased urinary sodium excretion, despite similar plasma renin activity and aldosterone levels. Kidneys from Vpr-transgenic mice also markedly reduced protein abundance of the Na(+)-Cl(-) cotransporter (NCC), while mineralocorticoid receptor (MR) protein expression level was unchanged. In African green monkey kidney cells, Vpr abrogated the aldosterone-mediated stimulation of MR transcriptional activity. Gene expression of Slc12a3 (NCC) in Vpr-transgenic mice was significantly lower compared with wild-type mice, assessed by both qRT-PCR and RNAScope in situ hybridization analysis. Chromatin immunoprecipitation assays identified multiple MR response elements (MRE), located from 5 kb upstream of the transcription start site and extending to the third exon of the SLC12A3 gene. Mutation of MRE and SP1 sites in the SLC12A3 promoter region abrogated the transcriptional responses to aldosterone and Vpr, indicating that functional MRE and SP1 are required for the SLC12A3 gene suppression in response to Vpr. Thus, Vpr attenuates MR transcriptional activity and inhibits Slc12a3 transcription in the distal convoluted tubule and contributes to salt wasting in Vpr-transgenic mice.
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spelling pubmed-94915502022-09-22 HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule Shrivastav, Shashi Lee, Hewang Okamoto, Koji Lu, Huiyan Yoshida, Teruhiko Latt, Khun Zaw Wakashin, Hidefumi Dalgleish, James L. T. Koritzinsky, Erik H. Xu, Peng Asico, Laureano D. Chung, Joon-Yong Hewitt, Stephen Gildea, John J. Felder, Robin A. Jose, Pedro A. Rosenberg, Avi Z. Knepper, Mark A. Kino, Tomoshige Kopp, Jeffrey B. PLoS One Research Article HIV-associated nephropathy (HIVAN) impairs functions of both glomeruli and tubules. Attention has been previously focused on the HIVAN glomerulopathy. Tubular injury has drawn increased attention because sodium wasting is common in hospitalized HIV/AIDS patients. We used viral protein R (Vpr)-transgenic mice to investigate the mechanisms whereby Vpr contributes to urinary sodium wasting. In phosphoenolpyruvate carboxykinase promoter-driven Vpr-transgenic mice, in situ hybridization showed that Vpr mRNA was expressed in all nephron segments, including the distal convoluted tubule. Vpr-transgenic mice, compared with wild-type littermates, markedly increased urinary sodium excretion, despite similar plasma renin activity and aldosterone levels. Kidneys from Vpr-transgenic mice also markedly reduced protein abundance of the Na(+)-Cl(-) cotransporter (NCC), while mineralocorticoid receptor (MR) protein expression level was unchanged. In African green monkey kidney cells, Vpr abrogated the aldosterone-mediated stimulation of MR transcriptional activity. Gene expression of Slc12a3 (NCC) in Vpr-transgenic mice was significantly lower compared with wild-type mice, assessed by both qRT-PCR and RNAScope in situ hybridization analysis. Chromatin immunoprecipitation assays identified multiple MR response elements (MRE), located from 5 kb upstream of the transcription start site and extending to the third exon of the SLC12A3 gene. Mutation of MRE and SP1 sites in the SLC12A3 promoter region abrogated the transcriptional responses to aldosterone and Vpr, indicating that functional MRE and SP1 are required for the SLC12A3 gene suppression in response to Vpr. Thus, Vpr attenuates MR transcriptional activity and inhibits Slc12a3 transcription in the distal convoluted tubule and contributes to salt wasting in Vpr-transgenic mice. Public Library of Science 2022-09-21 /pmc/articles/PMC9491550/ /pubmed/36129874 http://dx.doi.org/10.1371/journal.pone.0273313 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Shrivastav, Shashi
Lee, Hewang
Okamoto, Koji
Lu, Huiyan
Yoshida, Teruhiko
Latt, Khun Zaw
Wakashin, Hidefumi
Dalgleish, James L. T.
Koritzinsky, Erik H.
Xu, Peng
Asico, Laureano D.
Chung, Joon-Yong
Hewitt, Stephen
Gildea, John J.
Felder, Robin A.
Jose, Pedro A.
Rosenberg, Avi Z.
Knepper, Mark A.
Kino, Tomoshige
Kopp, Jeffrey B.
HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule
title HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule
title_full HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule
title_fullStr HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule
title_full_unstemmed HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule
title_short HIV-1 Vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule
title_sort hiv-1 vpr suppresses expression of the thiazide-sensitive sodium chloride co-transporter in the distal convoluted tubule
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9491550/
https://www.ncbi.nlm.nih.gov/pubmed/36129874
http://dx.doi.org/10.1371/journal.pone.0273313
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