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MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries

BACKGROUND AND PURPOSE: Hypoxia during pregnancy is associated with increased uterine vascular resistance and elevated blood pressure both in women and female sheep. A previous study demonstrated a causal role of microRNA‐210 (miR‐210) in gestational hypoxia‐induced suppression of Ca(2+) sparks/spon...

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Autores principales: Hu, Xiang‐Qun, Song, Rui, Dasgupta, Chiranjib, Romero, Monica, Juarez, Rucha, Hanson, Jenna, Blood, Arlin B., Wilson, Sean M., Zhang, Lubo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9474621/
https://www.ncbi.nlm.nih.gov/pubmed/35776536
http://dx.doi.org/10.1111/bph.15914
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author Hu, Xiang‐Qun
Song, Rui
Dasgupta, Chiranjib
Romero, Monica
Juarez, Rucha
Hanson, Jenna
Blood, Arlin B.
Wilson, Sean M.
Zhang, Lubo
author_facet Hu, Xiang‐Qun
Song, Rui
Dasgupta, Chiranjib
Romero, Monica
Juarez, Rucha
Hanson, Jenna
Blood, Arlin B.
Wilson, Sean M.
Zhang, Lubo
author_sort Hu, Xiang‐Qun
collection PubMed
description BACKGROUND AND PURPOSE: Hypoxia during pregnancy is associated with increased uterine vascular resistance and elevated blood pressure both in women and female sheep. A previous study demonstrated a causal role of microRNA‐210 (miR‐210) in gestational hypoxia‐induced suppression of Ca(2+) sparks/spontaneous transient outward currents (STOCs) in ovine uterine arteries, but the underlying mechanisms remain undetermined. We tested the hypothesis that miR‐210 perturbs mitochondrial metabolism and increases mitochondrial reactive oxygen species (mtROS) that confer hypoxia‐induced suppression of STOCs in uterine arteries. EXPERIMENTAL APPROACH: Resistance‐sized uterine arteries were isolated from near‐term pregnant sheep and were treated ex vivo in normoxia and hypoxia (10.5% O(2)) for 48 h. KEY RESULTS: Hypoxia increased mtROS and suppressed mitochondrial respiration in uterine arteries, which were also produced by miR‐210 mimic to normoxic arteries and blocked by antagomir miR‐210‐LNA in hypoxic arteries. Hypoxia or miR‐210 mimic inhibited Ca(2+) sparks/STOCs and increased uterine arterial myogenic tone, which were inhibited by the mitochondria‐targeted antioxidant MitoQ. Hypoxia and miR‐210 down‐regulated iron–sulfur cluster scaffold protein (ISCU) in uterine arteries and knockdown of ISCU via siRNAs suppressed mitochondrial respiration, increased mtROS, and inhibited STOCs. In addition, blockade of mitochondrial electron transport chain with antimycin and rotenone inhibited large‐conductance Ca(2+)‐activated K(+) channels, decreased STOCs and increased uterine arterial myogenic tone. CONCLUSION AND IMPLICATIONS: This study demonstrates a novel mechanistic role for the miR‐210‐ISCU‐mtROS axis in inhibiting Ca(2+) sparks/STOCs in the maladaptation of uterine arteries and provides new insights into the understanding of mitochondrial perturbations in the pathogenesis of pregnancy complications resulted from hypoxia.
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spelling pubmed-94746212022-10-14 MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries Hu, Xiang‐Qun Song, Rui Dasgupta, Chiranjib Romero, Monica Juarez, Rucha Hanson, Jenna Blood, Arlin B. Wilson, Sean M. Zhang, Lubo Br J Pharmacol Research Articles BACKGROUND AND PURPOSE: Hypoxia during pregnancy is associated with increased uterine vascular resistance and elevated blood pressure both in women and female sheep. A previous study demonstrated a causal role of microRNA‐210 (miR‐210) in gestational hypoxia‐induced suppression of Ca(2+) sparks/spontaneous transient outward currents (STOCs) in ovine uterine arteries, but the underlying mechanisms remain undetermined. We tested the hypothesis that miR‐210 perturbs mitochondrial metabolism and increases mitochondrial reactive oxygen species (mtROS) that confer hypoxia‐induced suppression of STOCs in uterine arteries. EXPERIMENTAL APPROACH: Resistance‐sized uterine arteries were isolated from near‐term pregnant sheep and were treated ex vivo in normoxia and hypoxia (10.5% O(2)) for 48 h. KEY RESULTS: Hypoxia increased mtROS and suppressed mitochondrial respiration in uterine arteries, which were also produced by miR‐210 mimic to normoxic arteries and blocked by antagomir miR‐210‐LNA in hypoxic arteries. Hypoxia or miR‐210 mimic inhibited Ca(2+) sparks/STOCs and increased uterine arterial myogenic tone, which were inhibited by the mitochondria‐targeted antioxidant MitoQ. Hypoxia and miR‐210 down‐regulated iron–sulfur cluster scaffold protein (ISCU) in uterine arteries and knockdown of ISCU via siRNAs suppressed mitochondrial respiration, increased mtROS, and inhibited STOCs. In addition, blockade of mitochondrial electron transport chain with antimycin and rotenone inhibited large‐conductance Ca(2+)‐activated K(+) channels, decreased STOCs and increased uterine arterial myogenic tone. CONCLUSION AND IMPLICATIONS: This study demonstrates a novel mechanistic role for the miR‐210‐ISCU‐mtROS axis in inhibiting Ca(2+) sparks/STOCs in the maladaptation of uterine arteries and provides new insights into the understanding of mitochondrial perturbations in the pathogenesis of pregnancy complications resulted from hypoxia. John Wiley and Sons Inc. 2022-07-17 2022-10 /pmc/articles/PMC9474621/ /pubmed/35776536 http://dx.doi.org/10.1111/bph.15914 Text en © 2022 The Authors. British Journal of Pharmacology published by John Wiley & Sons Ltd on behalf of British Pharmacological Society. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Hu, Xiang‐Qun
Song, Rui
Dasgupta, Chiranjib
Romero, Monica
Juarez, Rucha
Hanson, Jenna
Blood, Arlin B.
Wilson, Sean M.
Zhang, Lubo
MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries
title MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries
title_full MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries
title_fullStr MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries
title_full_unstemmed MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries
title_short MicroRNA‐210‐mediated mtROS confer hypoxia‐induced suppression of STOCs in ovine uterine arteries
title_sort microrna‐210‐mediated mtros confer hypoxia‐induced suppression of stocs in ovine uterine arteries
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9474621/
https://www.ncbi.nlm.nih.gov/pubmed/35776536
http://dx.doi.org/10.1111/bph.15914
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