Literature DB >> 29438598

Variable Contribution of TMEM16A to Tone in Murine Arterial Vasculature.

Anders Bisgaard Jensen1, Henrik Black Joergensen1, Vibeke Secher Dam1, Dmitrii Kamaev1, Donna Boedtkjer1,2, Ernst-Martin Füchtbauer3, Christian Aalkjaer1, Vladimir V Matchkov1.   

Abstract

TMEM16A is essential for Ca2+ -activated Cl- conductance in vascular smooth muscle. The importance of TMEM16A for agonist-induced vascular constriction and blood pressure control is, however, under debate. Previous studies suggested that TMEM16A might have a complex cellular function beyond being essential for the Ca2+ -activated Cl- conductance, for example modulation of Ca2+ channel expression. Mice with constitutive, smooth muscle-specific expression of siRNA directed against Tmem16a (transgenic mice, TG) were generated. Isometric constrictions of isolated aorta, mesenteric, femoral and tail arteries from TG mice were compared with wild-types. Protein expression was analysed by Western blots. Blood pressure and heart rate were studied telemetrically. Significant TMEM16A down-regulation was seen in aorta and tail arteries, while no changes were detected in mesenteric and femoral arteries. Contractile responses of mesenteric and femoral arteries from TG and wild-type mice were not different. Aorta from TG mice showed reduced agonist-induced constriction, while their responses to elevated K+ were unchanged. Tail arteries from TG mice also constricted less to adrenergic stimulation than wild-types. Surprisingly, tail arteries from TG mice constricted less to elevated K+ too and were more sensitive to nifedipine-induced relaxation. Consistently, TMEM16A down-regulation in tail arteries was associated with reduction in CACNA1C protein (i.e. vascular L-type Ca2+ channel) expression. No differences in blood pressure and heart rate between the groups were seen. This study suggests a complex contribution of TMEM16A in vascular function. We suggest that TMEM16A modulates arterial contractility, at least in part, indirectly via regulation of CACNA1C expression.
© 2018 Nordic Association for the Publication of BCPT (former Nordic Pharmacological Society).

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Year:  2018        PMID: 29438598     DOI: 10.1111/bcpt.12984

Source DB:  PubMed          Journal:  Basic Clin Pharmacol Toxicol        ISSN: 1742-7835            Impact factor:   4.080


  6 in total

1.  TMEM16A is implicated in the regulation of coronary flow and is altered in hypertension.

Authors:  Henry R Askew Page; Thomas Dalsgaard; Samuel N Baldwin; Thomas A Jepps; Oleksandr Povstyan; Søren P Olesen; Iain A Greenwood
Journal:  Br J Pharmacol       Date:  2019-04-11       Impact factor: 8.739

2.  A small molecule inhibitor of the chloride channel TMEM16A blocks vascular smooth muscle contraction and lowers blood pressure in spontaneously hypertensive rats.

Authors:  Onur Cil; Xiaolan Chen; Henry R Askew Page; Samuel N Baldwin; Maria C Jordan; Pyone Myat Thwe; Marc O Anderson; Peter M Haggie; Iain A Greenwood; Kenneth P Roos; Alan S Verkman
Journal:  Kidney Int       Date:  2021-04-06       Impact factor: 18.998

3.  Migraine-Associated Mutation in the Na,K-ATPase Leads to Disturbances in Cardiac Metabolism and Reduced Cardiac Function.

Authors:  Christian Staehr; Palle Duun Rohde; Nikolaj Thure Krarup; Steffen Ringgaard; Christoffer Laustsen; Jacob Johnsen; Rikke Nielsen; Hans Christian Beck; Jens Preben Morth; Karin Lykke-Hartmann; Nichlas Riise Jespersen; Denis Abramochkin; Mette Nyegaard; Hans Erik Bøtker; Christian Aalkjaer; Vladimir Matchkov
Journal:  J Am Heart Assoc       Date:  2022-03-15       Impact factor: 6.106

4.  Reduced Expression of TMEM16A Impairs Nitric Oxide-Dependent Cl- Transport in Retinal Amacrine Cells.

Authors:  Tyler Christopher Rodriguez; Li Zhong; Hailey Simpson; Evanna Gleason
Journal:  Front Cell Neurosci       Date:  2022-07-27       Impact factor: 6.147

5.  A paradoxical increase of force development in saphenous and tail arteries from heterozygous ANO1 knockout mice.

Authors:  Vladimir V Matchkov; Henrik Black Joergensen; Dmitrii Kamaev; Andreas Hoegh Jensen; Hans Christian Beck; Boris V Skryabin; Christian Aalkjaer
Journal:  Physiol Rep       Date:  2020-11

6.  Trophic sympathetic influence weakens pro-contractile role of Cl- channels in rat arteries during postnatal maturation.

Authors:  Daria S Kostyunina; Lin Zhang; Anastasia A Shvetsova; Ekaterina K Selivanova; Olga S Tarasova; Vladimir V Matchkov; Dina K Gaynullina
Journal:  Sci Rep       Date:  2020-11-17       Impact factor: 4.379

  6 in total

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