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3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension

Pulmonary hypertension (PH) comprises a diverse group of disorders that share a common pathway of pulmonary vascular remodeling leading to right ventricular failure. Development of anti-remodeling strategies is an emerging frontier in PH therapeutics that requires a greater understanding of the inte...

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Autores principales: Tseng, Victor, Collum, Scott D., Allawzi, Ayed, Crotty, Kathryn, Yeligar, Samantha, Trammell, Aaron, Smith, M. Ryan, Kang, Bum-Yong, Sutliff, Roy L., Ingram, Jennifer L., Jyothula, Soma S.S.K., Thandavarayan, Rajarajan A., Huang, Howard J., Nozik, Eva S., Wagner, Eric J., Hart, C. Michael, Karmouty-Quintana, Harry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9676077/
https://www.ncbi.nlm.nih.gov/pubmed/35671866
http://dx.doi.org/10.1016/j.matbio.2022.06.001
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author Tseng, Victor
Collum, Scott D.
Allawzi, Ayed
Crotty, Kathryn
Yeligar, Samantha
Trammell, Aaron
Smith, M. Ryan
Kang, Bum-Yong
Sutliff, Roy L.
Ingram, Jennifer L.
Jyothula, Soma S.S.K.
Thandavarayan, Rajarajan A.
Huang, Howard J.
Nozik, Eva S.
Wagner, Eric J.
Hart, C. Michael
Karmouty-Quintana, Harry
author_facet Tseng, Victor
Collum, Scott D.
Allawzi, Ayed
Crotty, Kathryn
Yeligar, Samantha
Trammell, Aaron
Smith, M. Ryan
Kang, Bum-Yong
Sutliff, Roy L.
Ingram, Jennifer L.
Jyothula, Soma S.S.K.
Thandavarayan, Rajarajan A.
Huang, Howard J.
Nozik, Eva S.
Wagner, Eric J.
Hart, C. Michael
Karmouty-Quintana, Harry
author_sort Tseng, Victor
collection PubMed
description Pulmonary hypertension (PH) comprises a diverse group of disorders that share a common pathway of pulmonary vascular remodeling leading to right ventricular failure. Development of anti-remodeling strategies is an emerging frontier in PH therapeutics that requires a greater understanding of the interactions between vascular wall cells and their extracellular matrices. The ubiquitous matrix glycan, hyaluronan (HA), is markedly elevated in lungs from patients and experimental models with PH. Herein, we identified HA synthase-2 (HAS2) in the pulmonary artery smooth muscle cell (PASMC) layer as a predominant locus of HA dysregulation. HA upregulation involves depletion of NUDT21, a master regulator of alternative polyadenylation, resulting in 3’UTR shortening and hyper-expression of HAS2. The ensuing increase of HAS2 and hyper-synthesis of HA promoted bioenergetic dysfunction of PASMC characterized by impaired mitochondrial oxidative capacity and a glycolytic shift. The resulting HA accumulation stimulated pro-remodeling phenotypes such as cell proliferation, migration, apoptosis-resistance, and stimulated pulmonary artery contractility. Transgenic mice, mimicking HAS2 hyper-synthesis in smooth muscle cells, developed spontaneous PH, whereas targeted deletion of HAS2 prevented experimental PH. Pharmacological blockade of HAS2 restored normal bioenergetics in PASMC, ameliorated cell remodeling phenotypes, and reversed experimental PH in vivo. In summary, our results uncover a novel mechanism of HA hyper-synthesis and downstream effects on pulmonary vascular cell metabolism and remodeling.
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spelling pubmed-96760772023-08-01 3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension Tseng, Victor Collum, Scott D. Allawzi, Ayed Crotty, Kathryn Yeligar, Samantha Trammell, Aaron Smith, M. Ryan Kang, Bum-Yong Sutliff, Roy L. Ingram, Jennifer L. Jyothula, Soma S.S.K. Thandavarayan, Rajarajan A. Huang, Howard J. Nozik, Eva S. Wagner, Eric J. Hart, C. Michael Karmouty-Quintana, Harry Matrix Biol Article Pulmonary hypertension (PH) comprises a diverse group of disorders that share a common pathway of pulmonary vascular remodeling leading to right ventricular failure. Development of anti-remodeling strategies is an emerging frontier in PH therapeutics that requires a greater understanding of the interactions between vascular wall cells and their extracellular matrices. The ubiquitous matrix glycan, hyaluronan (HA), is markedly elevated in lungs from patients and experimental models with PH. Herein, we identified HA synthase-2 (HAS2) in the pulmonary artery smooth muscle cell (PASMC) layer as a predominant locus of HA dysregulation. HA upregulation involves depletion of NUDT21, a master regulator of alternative polyadenylation, resulting in 3’UTR shortening and hyper-expression of HAS2. The ensuing increase of HAS2 and hyper-synthesis of HA promoted bioenergetic dysfunction of PASMC characterized by impaired mitochondrial oxidative capacity and a glycolytic shift. The resulting HA accumulation stimulated pro-remodeling phenotypes such as cell proliferation, migration, apoptosis-resistance, and stimulated pulmonary artery contractility. Transgenic mice, mimicking HAS2 hyper-synthesis in smooth muscle cells, developed spontaneous PH, whereas targeted deletion of HAS2 prevented experimental PH. Pharmacological blockade of HAS2 restored normal bioenergetics in PASMC, ameliorated cell remodeling phenotypes, and reversed experimental PH in vivo. In summary, our results uncover a novel mechanism of HA hyper-synthesis and downstream effects on pulmonary vascular cell metabolism and remodeling. 2022-08 2022-06-04 /pmc/articles/PMC9676077/ /pubmed/35671866 http://dx.doi.org/10.1016/j.matbio.2022.06.001 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) )
spellingShingle Article
Tseng, Victor
Collum, Scott D.
Allawzi, Ayed
Crotty, Kathryn
Yeligar, Samantha
Trammell, Aaron
Smith, M. Ryan
Kang, Bum-Yong
Sutliff, Roy L.
Ingram, Jennifer L.
Jyothula, Soma S.S.K.
Thandavarayan, Rajarajan A.
Huang, Howard J.
Nozik, Eva S.
Wagner, Eric J.
Hart, C. Michael
Karmouty-Quintana, Harry
3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension
title 3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension
title_full 3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension
title_fullStr 3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension
title_full_unstemmed 3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension
title_short 3’UTR shortening of HAS2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension
title_sort 3’utr shortening of has2 promotes hyaluronan hyper-synthesis and bioenergetic dysfunction in pulmonary hypertension
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9676077/
https://www.ncbi.nlm.nih.gov/pubmed/35671866
http://dx.doi.org/10.1016/j.matbio.2022.06.001
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