AMCoR Asahikawa Medical College
HOME
|

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。

※AMCoRに収録された学術論文のほとんどは、商業出版社や学会出版社の学術雑誌に掲載されたものですが、著作権に係わる出版社の方針により、出版社の条件に添った版を収録しています。そのため実際の誌面とはレイアウトの相違や、字句校正による文言の違いがあり得ますことをあらかじめご了承ください。


| ホーム ニュース ログイン |

Language

AMCoR検索
  
     詳細検索

インデックスツリー

詳細



閲覧数:1367
ID 15072971
アイテムタイプ Article
このアイテムを表示する
本文 3330.pdf
Type : application/pdf Download
Size : 421.7 KB
Last updated : Feb 14, 2007
Downloads : 1339

Total downloads since Feb 14, 2007 : 1339
タイトル Translocation of caveolin regulates stretch-induced ERK activity in vascular smooth muscle
著者
川辺, 淳一 (Kawabe, Junichi)
Okumura, S
Lee, MC
Sadoshima, J
Ishikawa, Y
上位タイトル
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY Vol.286, No.5  (2004. 5) ,p.H1845- H1852
識別番号
ISSN
0363-6135
DOI 10.1152/ajpheart.00593.2003
URI http://ajpheart.physiology.org/cgi/content/abstract/286/5/H1845?maxtoshow=&HITS=10&hits=10&RESULTFORMAT=&andorexactfulltext=and&searchid=1&FIRSTINDEX=0&sortspec=relevance&volume=286&firstpage=H1845&resourcetype=HWCIT
抄録 Mechanical stress contributes to vascular disease related to hypertension. Activation of ERK is key to mediating cellular proliferation and vascular remodeling in response to stretch stress. However, the mechanism by which stretch mediates ERK activation in the vascular tissue is still unclear. Caveolin, a major component of a flasklike invaginated caveolae, acts as an adaptor protein for an integrin-mediated signaling pathway. We found that cyclic stretch transiently induced translocation of caveolin from caveolae to noncaveolar membrane sites in vascular smooth muscle cells (VSMCs). This translocation of caveolin was determined by detergent solubility, sucrose gradient fractionation, and immunocytochemistry. Cyclic stretch induced ERK activation; the activity peaked at 5 min (the early phase), decreased gradually, but persisted up to 120 min (the late phase). Disruption of caveolae by methyl-β-cyclodextrin, decreasing the caveolar caveolin and accumulating the noncaveolar caveolin, enhanced ERK activation in both the early and late phases. When endogenous caveolins were downregulated, however, the late-phase ERK activation was subsided completely. Caveolin, which was translocated to noncaveolar sites in response to stretch, is associated with β_1-integrins as well as with Fyn and Shc, components required for ERK activation. Taken together, caveolin in caveolae may keep ERK inactive, but when caveolin is translocated to noncaveolar sites in response to stretch stress, caveolin mediates stretch-induced ERK activation through an association with β_1-integrins/Fyn/Shc. We suggest that stretch-induced translocation of caveolin to noncaveolar sites plays an important role in mediating stretch-induced ERK activation in VSMCs.
注記 Kawabe, J; Okumura, S; Lee, MC; Sadoshima, J; Ishikawa, Y, AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 286(5), H1845-H1852, 2004. "Copyright 2004 by the American Physical Society."

publisher
言語
eng
資源タイプ text
ジャンル Journal Article
著者版フラグ publisher
Index
/ Public
/ Public / 国外雑誌論文
関連アイテム