CD98 activation increases surface expression and clustering of β1 integrins in MCF-7 cells through FAK/Src- and cytoskeleton-independent mechanisms

  • Kim, Sun-Mi
  • Hahn, Jang-Hee
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초록

CD98, a disulfide-linked 125-kDa heterodimeric type II transmembrane glycoprotein, regulates beta(1) integrin-mediated cell adhesion. However, the molecular mechanisms underlying CD98-mediated activation of beta(1) integrin are presently unclear. In this study, the effects of CD98 signaling on the expression and clustering of beta(1) integrin were investigated. Activation of CD98 augmented surface expression of beta(1) integrin on MCF-7 cells. Cross-linking CD98 induced clustering of beta(1) integrins. Inhibition of phosphorylation of focal adhesion kimase (FAK) by PP2, an inhibitor of Src family kinase, reduced cell-extracellular matrix adhesion, but not surface expression and clustering of beta(1) integrin on MCF-7 cells. This result was confirmed by over-expression of dominant negative forms of FAK. In addition, phalloidin or cytochalasin D inhibited CD98-mediated induction of cell-ECM adhesion, but not surface expression and clustering of beta(1) integrins. The inhibitory effects of PP2, cytochalasin D or phalloidin on CD98-stimulated cell adhesion were diminished by pretreatment of cells with Mn2+, which is shown to induce conformational change of integrins. These results provide the first evidence that CD98 activation increases not only beta(1) integrin affinity but also its surface expression and clustering and the latter is independent of FAK/Src and cytoskeleton.

키워드

actinsantigens, CD98cytoskeletonfocal adhesion kinaseintegrin beta(1)FOCAL ADHESION KINASEPROTEINASSOCIATIONANTIGENALPHA(IIB)BETA(3)STIMULATIONLYMPHOCYTESDOMAINSCOMPLEXFAMILY
제목
CD98 activation increases surface expression and clustering of β1 integrins in MCF-7 cells through FAK/Src- and cytoskeleton-independent mechanisms
저자
Kim, Sun-MiHahn, Jang-Hee
DOI
10.3858/emm.2008.40.3.261
발행일
2008-06-30
유형
Article
저널명
Experimental & Molecular Medicine
40
3
페이지
261 ~ 270