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AMCoR:Asahikawa Medical University Collection and Research (旭川医科大学学術成果リポジトリ)は、本学で生産された電子的な知的生産物(学術雑誌論文の原稿・教材・学術資料など)を保存し、原則的に無償で発信するためのインターネット上の保管庫です。

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閲覧数:1041
ID 24770446
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タイトル The involvement of myosin regulatory light chain diphosphorylation in sustained vasoconstriction under pathophysiological conditions.
著者
竹谷, 浩介 (Takeya, Kosuke)
Xuemei, Wang
Cindy, Sutherland
Iris, Kathol
Kathy, Loutzenhiser
Rodger D. Loutzenhiser
Michael P. Walsh
上位タイトル
Journal of Smooth Muscle Research Vol.50, (2014. ) ,p.18- 28
識別番号
ISSN
09168737
DOI 10.1540/jsmr.50.18
その他
PMID:24770446
抄録 Smooth muscle contraction is activated primarily by phosphorylation at Ser19 of the regulatory light chain subunits (LC20) of myosin II, catalysed by Ca(2+)/calmodulin-dependent myosin light chain kinase. Ca(2+)-independent contraction can be induced by inhibition of myosin light chain phosphatase, which correlates with diphosphorylation of LC20 at Ser19 and Thr18, catalysed by integrin-linked kinase (ILK) and zipper-interacting protein kinase (ZIPK). LC20 diphosphorylation at Ser19 and Thr18 has been detected in mammalian vascular smooth muscle tissues in response to specific contractile stimuli (e.g. endothelin-1 stimulation of rat renal afferent arterioles) and in pathophysiological situations associated with hypercontractility (e.g. cerebral vasospasm following subarachnoid hemorrhage). Comparison of the effects of LC 20 monophosphorylation at Ser19 and diphosphorylation at Ser19 and Thr18 on contraction and relaxation of Triton-skinned rat caudal arterial smooth muscle revealed that phosphorylation at Thr18 has no effect on steady-state force induced by Ser19 phosphorylation. On the other hand, the rates of dephosphorylation and relaxation are significantly slower following diphosphorylation at Thr18 and Ser19 compared to monophosphorylation at Ser19. We propose that this diphosphorylation mechanism underlies the prolonged contractile response of particular vascular smooth muscle tissues to specific stimuli, e.g. endothelin-1 stimulation of renal afferent arterioles, and the vasospastic behavior observed in pathological conditions such as cerebral vasospasm following subarachnoid hemorrhage and coronary arterial vasospasm. ILK and ZIPK may, therefore, be useful therapeutic targets for the treatment of such conditions.
キーワード
smooth muscle
renal microcirculation
myosin phosphorylation
integrin-linked kinase
zipper-interacting protein kinase
注記 publisher
言語
eng
資源タイプ text
ジャンル Journal Article
著者版フラグ publisher
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/ Public
/ Public / 国内雑誌論文
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