Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity

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Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity. / Abbott, Geoffrey W; Jepps, Thomas A.

I: Journal of Vascular Research, Bind 53, Nr. 3-4, 07.10.2016, s. 138-148.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Abbott, GW & Jepps, TA 2016, 'Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity', Journal of Vascular Research, bind 53, nr. 3-4, s. 138-148. https://doi.org/10.1159/000449060

APA

Abbott, G. W., & Jepps, T. A. (2016). Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity. Journal of Vascular Research, 53(3-4), 138-148. https://doi.org/10.1159/000449060

Vancouver

Abbott GW, Jepps TA. Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity. Journal of Vascular Research. 2016 okt. 7;53(3-4):138-148. https://doi.org/10.1159/000449060

Author

Abbott, Geoffrey W ; Jepps, Thomas A. / Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity. I: Journal of Vascular Research. 2016 ; Bind 53, Nr. 3-4. s. 138-148.

Bibtex

@article{3a04fcdd96f34d98af5ff6e5268df6f9,
title = "Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity",
abstract = "Voltage-gated potassium (Kv) channels formed by Kv7 (KCNQ) α-subunits are recognized as crucial for vascular smooth muscle function, in addition to their established roles in the heart (Kv7.1) and the brain (Kv7.2-5). In vivo, Kv7 α-subunits are often regulated by KCNE subfamily ancillary (β) subunits. We investigated the effects of targeted germline Kcne4 deletion on mesenteric artery reactivity in adult male and female mice. Kcne4 deletion increased mesenteric artery contractility in response to α-adrenoceptor agonist methoxamine, and decreased responses to Kv7.2-7.5 channel activator ML213, in male but not female mice. In contrast, Kcne4 deletion markedly decreased vasorelaxation in response to isoprenaline in both male and female mice. Kcne4 expression was 2-fold lower in the female versus the male mouse mesenteric artery, and Kcne4 deletion elicited only moderate changes of other Kcne transcripts, with no striking sex-specific differences. However, Kv7.4 protein expression in females was twice that in males, and was reduced in both sexes by Kcne4 deletion. Our findings confirm a crucial role for KCNE4 in regulation of Kv7 channel activity to modulate vascular tone, and provide the first known molecular mechanism for sex-specificity of this modulation that has important implications for vascular reactivity and may underlie sex-specific susceptibility to cardiovascular diseases.",
author = "Abbott, {Geoffrey W} and Jepps, {Thomas A}",
note = "{\textcopyright} 2016 S. Karger AG, Basel.",
year = "2016",
month = oct,
day = "7",
doi = "10.1159/000449060",
language = "English",
volume = "53",
pages = "138--148",
journal = "Journal of Vascular Research",
issn = "1018-1172",
publisher = "S Karger AG",
number = "3-4",

}

RIS

TY - JOUR

T1 - Kcne4 Deletion Sex-Dependently Alters Vascular Reactivity

AU - Abbott, Geoffrey W

AU - Jepps, Thomas A

N1 - © 2016 S. Karger AG, Basel.

PY - 2016/10/7

Y1 - 2016/10/7

N2 - Voltage-gated potassium (Kv) channels formed by Kv7 (KCNQ) α-subunits are recognized as crucial for vascular smooth muscle function, in addition to their established roles in the heart (Kv7.1) and the brain (Kv7.2-5). In vivo, Kv7 α-subunits are often regulated by KCNE subfamily ancillary (β) subunits. We investigated the effects of targeted germline Kcne4 deletion on mesenteric artery reactivity in adult male and female mice. Kcne4 deletion increased mesenteric artery contractility in response to α-adrenoceptor agonist methoxamine, and decreased responses to Kv7.2-7.5 channel activator ML213, in male but not female mice. In contrast, Kcne4 deletion markedly decreased vasorelaxation in response to isoprenaline in both male and female mice. Kcne4 expression was 2-fold lower in the female versus the male mouse mesenteric artery, and Kcne4 deletion elicited only moderate changes of other Kcne transcripts, with no striking sex-specific differences. However, Kv7.4 protein expression in females was twice that in males, and was reduced in both sexes by Kcne4 deletion. Our findings confirm a crucial role for KCNE4 in regulation of Kv7 channel activity to modulate vascular tone, and provide the first known molecular mechanism for sex-specificity of this modulation that has important implications for vascular reactivity and may underlie sex-specific susceptibility to cardiovascular diseases.

AB - Voltage-gated potassium (Kv) channels formed by Kv7 (KCNQ) α-subunits are recognized as crucial for vascular smooth muscle function, in addition to their established roles in the heart (Kv7.1) and the brain (Kv7.2-5). In vivo, Kv7 α-subunits are often regulated by KCNE subfamily ancillary (β) subunits. We investigated the effects of targeted germline Kcne4 deletion on mesenteric artery reactivity in adult male and female mice. Kcne4 deletion increased mesenteric artery contractility in response to α-adrenoceptor agonist methoxamine, and decreased responses to Kv7.2-7.5 channel activator ML213, in male but not female mice. In contrast, Kcne4 deletion markedly decreased vasorelaxation in response to isoprenaline in both male and female mice. Kcne4 expression was 2-fold lower in the female versus the male mouse mesenteric artery, and Kcne4 deletion elicited only moderate changes of other Kcne transcripts, with no striking sex-specific differences. However, Kv7.4 protein expression in females was twice that in males, and was reduced in both sexes by Kcne4 deletion. Our findings confirm a crucial role for KCNE4 in regulation of Kv7 channel activity to modulate vascular tone, and provide the first known molecular mechanism for sex-specificity of this modulation that has important implications for vascular reactivity and may underlie sex-specific susceptibility to cardiovascular diseases.

U2 - 10.1159/000449060

DO - 10.1159/000449060

M3 - Journal article

C2 - 27710966

VL - 53

SP - 138

EP - 148

JO - Journal of Vascular Research

JF - Journal of Vascular Research

SN - 1018-1172

IS - 3-4

ER -

ID: 167175403