共 35 条
Sphingosylphosphorylcholine induces stress fiber formation via activation of Fyn-RhoA-ROCK signaling pathway in fibroblasts
被引:18
作者:
Xu, Dan
[1
]
Kishi, Hiroko
[1
]
Kawamichi, Hozumi
[1
]
Kajiya, Katsuko
[1
]
Takada, Yuichi
[1
]
Kobayashi, Sei
[1
]
机构:
[1] Yamaguchi Univ, Grad Sch Med, Dept Mol Physiol & Med Bioregulat, Ube, Yamaguchi 7558505, Japan
关键词:
SPC;
Fyn;
RhoA;
Rho-kinase;
Stress fiber;
SRC-FAMILY KINASES;
SMOOTH-MUSCLE-CELLS;
TYROSINE KINASE;
ACTIN CYTOSKELETON;
C-SRC;
PHOSPHORYLATION;
INVOLVEMENT;
PALMITOYLATION;
BINDING;
DIFFERENTIATION;
D O I:
10.1016/j.cellsig.2011.09.013
中图分类号:
Q2 [细胞生物学];
学科分类号:
071009 ;
090102 ;
摘要:
Sphingosylphosphorylcholine (SPC), a bioactive sphingolipid, has recently been reported to modulate actin cytoskeleton rearrangement. We have previously demonstrated Fyn tyrosine kinase is involved in SPC-induced actin stress fiber formation in fibroblasts. However, Fyn-dependent signaling pathway remains to be elucidated. The present study demonstrates that RhoA-ROCK signaling downstream of Fyn controls stress fiber formation in SPC-treated fibroblasts. Here, we found that SPC-induced stress fiber formation was inhibited by C3 transferase, dominant negative RhoA or ROCK SPC activated RhoA, which was blocked by pharmacological inhibition of Fyn activity or dominant negative Fyn. Constitutively active Fyn (ca-Fyn) stimulated stress fiber formation and localized with F-actin at the both ends of stress fibers, both of which were prevented by Fyn translocation inhibitor eicosapentaenoic acid (EPA). In contrast, inhibition of ROCK abolished only the formation of stress fibers, without affecting the localization of ca-Fyn. These results allow the identification of the molecular events downstream SPC in stress fiber formation for a better understanding of stress fiber formation involving Fyn. (C) 2011 Elsevier Inc. All rights reserved.
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页码:282 / 289
页数:8
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