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Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways

To identify the effect and mechanism of carbon monoxide (CO) on delayed rectifier K(+) currents (I(K)) of human cardiac fibroblasts (HCFs), we used the whole-cell mode patch-clamp technique. Application of CO delivered by carbon monoxide-releasing molecule-3 (CORM3) increased the amplitude of outwar...

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Autores principales: Bae, Hyemi, Kim, Taeho, Lim, Inja
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Physiological Society and The Korean Society of Pharmacology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8723981/
https://www.ncbi.nlm.nih.gov/pubmed/34965993
http://dx.doi.org/10.4196/kjpp.2022.26.1.25
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author Bae, Hyemi
Kim, Taeho
Lim, Inja
author_facet Bae, Hyemi
Kim, Taeho
Lim, Inja
author_sort Bae, Hyemi
collection PubMed
description To identify the effect and mechanism of carbon monoxide (CO) on delayed rectifier K(+) currents (I(K)) of human cardiac fibroblasts (HCFs), we used the whole-cell mode patch-clamp technique. Application of CO delivered by carbon monoxide-releasing molecule-3 (CORM3) increased the amplitude of outward K(+) currents, and diphenyl phosphine oxide-1 (a specific I(K) blocker) inhibited the currents. CORM3-induced augmentation was blocked by pretreatment with nitric oxide synthase blockers (L-NG-monomethyl arginine citrate and L-NG-nitro arginine methyl ester). Pretreatment with KT5823 (a protein kinas G blocker), 1H-[1,-2,-4] oxadiazolo-[4,-3-a] quinoxalin-1-on (ODQ, a soluble guanylate cyclase blocker), KT5720 (a protein kinase A blocker), and SQ22536 (an adenylate cyclase blocker) blocked the CORM3 stimulating effect on I(K). In addition, pretreatment with SB239063 (a p38 mitogen-activated protein kinase [MAPK] blocker) and PD98059 (a p44/42 MAPK blocker) also blocked the CORM3’s effect on the currents. When testing the involvement of S-nitrosylation, pretreatment of N-ethylmaleimide (a thiol-alkylating reagent) blocked CO-induced I(K) activation and DL-dithiothreitol (a reducing agent) reversed this effect. Pretreatment with 5,10,15,20-tetrakis(1-methylpyridinium-4-yl)-21H,23H porphyrin manganese (III) pentachloride and manganese (III) tetrakis (4-benzoic acid) porphyrin chloride (superoxide dismutase mimetics), diphenyleneiodonium chloride (an NADPH oxidase blocker), or allopurinol (a xanthine oxidase blocker) also inhibited CO-induced I(K) activation. These results suggest that CO enhances I(K) in HCFs through the nitric oxide, phosphorylation by protein kinase G, protein kinase A, and MAPK, S-nitrosylation and reduction/oxidation (redox) signaling pathways.
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spelling pubmed-87239812022-01-11 Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways Bae, Hyemi Kim, Taeho Lim, Inja Korean J Physiol Pharmacol Original Article To identify the effect and mechanism of carbon monoxide (CO) on delayed rectifier K(+) currents (I(K)) of human cardiac fibroblasts (HCFs), we used the whole-cell mode patch-clamp technique. Application of CO delivered by carbon monoxide-releasing molecule-3 (CORM3) increased the amplitude of outward K(+) currents, and diphenyl phosphine oxide-1 (a specific I(K) blocker) inhibited the currents. CORM3-induced augmentation was blocked by pretreatment with nitric oxide synthase blockers (L-NG-monomethyl arginine citrate and L-NG-nitro arginine methyl ester). Pretreatment with KT5823 (a protein kinas G blocker), 1H-[1,-2,-4] oxadiazolo-[4,-3-a] quinoxalin-1-on (ODQ, a soluble guanylate cyclase blocker), KT5720 (a protein kinase A blocker), and SQ22536 (an adenylate cyclase blocker) blocked the CORM3 stimulating effect on I(K). In addition, pretreatment with SB239063 (a p38 mitogen-activated protein kinase [MAPK] blocker) and PD98059 (a p44/42 MAPK blocker) also blocked the CORM3’s effect on the currents. When testing the involvement of S-nitrosylation, pretreatment of N-ethylmaleimide (a thiol-alkylating reagent) blocked CO-induced I(K) activation and DL-dithiothreitol (a reducing agent) reversed this effect. Pretreatment with 5,10,15,20-tetrakis(1-methylpyridinium-4-yl)-21H,23H porphyrin manganese (III) pentachloride and manganese (III) tetrakis (4-benzoic acid) porphyrin chloride (superoxide dismutase mimetics), diphenyleneiodonium chloride (an NADPH oxidase blocker), or allopurinol (a xanthine oxidase blocker) also inhibited CO-induced I(K) activation. These results suggest that CO enhances I(K) in HCFs through the nitric oxide, phosphorylation by protein kinase G, protein kinase A, and MAPK, S-nitrosylation and reduction/oxidation (redox) signaling pathways. The Korean Physiological Society and The Korean Society of Pharmacology 2022-01-01 2022-01-01 /pmc/articles/PMC8723981/ /pubmed/34965993 http://dx.doi.org/10.4196/kjpp.2022.26.1.25 Text en Copyright © Korean J Physiol Pharmacol https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0 (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Bae, Hyemi
Kim, Taeho
Lim, Inja
Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways
title Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways
title_full Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways
title_fullStr Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways
title_full_unstemmed Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways
title_short Carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways
title_sort carbon monoxide activation of delayed rectifier potassium currents of human cardiac fibroblasts through diverse pathways
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8723981/
https://www.ncbi.nlm.nih.gov/pubmed/34965993
http://dx.doi.org/10.4196/kjpp.2022.26.1.25
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