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language |
eng
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Attribute |
Review
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Author | |
Description | There are two types of vascular smooth muscle contraction. One is normal contraction, which is physiological and Ca2+-dependent. Another is abnormal contraction, which causes vasospasm and Ca2+-independent. Rho-kinase and PKC are known key molecules to mediate the signal transduction of abnormal vascular smooth muscle contraction. Sphingosylphosphorylcholine (SPC) is a member of sphingolipids and induces Ca2+-independent, Rho-kinase-mediated abnormal vascular smooth muscle contraction via the activation of Src family tyrosine kinase (Src-TK). We found SPC-induced contraction is cholesterol-dependent and suggest the involvement of membrane raft in the signal transduction of abnormal vascular smooth muscle contraction mediated by SPC/Src-TK/Rho-kinase pathway. Eicosapentaenoic acid specifically inhibited abnormal vascular smooth muscle contraction through the inhibition of SPC/Src-TK/Rho-kinase pathway. By functional proteomics, we identified cytoskeleton-related proteins as the candidate of novel molecule to mediate abnormal vascular smooth muscle contraction and investigating their interaction with Rho-kinase. We hope that this interaction could be a new drug target.
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Subject | vascular smooth muscle contraction
functional proteomics
cytoskeleton-related proteins
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Journal Title |
Shimane Journal of Medical Science
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Volume | 41
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Issue | 1
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Start Page | 1
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End Page | 7
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ISSN | 03865959
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ISSN(Online) | 24332410
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Published Date | 2024-03
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NCID | AA00841586
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DOI | |
Publisher | Faculty of Medicine, Shimane University
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Publisher Aalternative | 島根大学医学部
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NII Type |
Departmental Bulletin Paper
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Format |
PDF
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Rights | Faculty of Medicine, Shimane University
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rights(link) | This article is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License. |
Text Version |
出版社版
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OAI-PMH Set |
Faculty of Medicine
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