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Title: Cytoskeletal restraints regulate homotypic ALCAM-mediated adhesion through PKCalpha independently of Rho-like GTPases.
Author(s): Zimmerman, A.W.
Nelissen, J.M.
Emst-de Vries, S.E. van (298975181)
Willems, P.H.G.M. (073323624)
Lange, F. de (18734342X)
Collard, J.G.
Leeuwen, F.N. van (314437290)
Figdor, C.G. (067631614)
Publication year: 2004
Document type: Article / Letter to editor
Journal: Journal of Cell Science
ISSN: 0021-9533
Volume: vol. 117
Issue: iss. Pt 13
Start page: p. 2841
End page: p. 2852
Abstract: The activated leukocyte cell adhesion molecule (ALCAM) is dynamically regulated by the actin cytoskeleton. In this study we explored the molecular mechanisms and signaling pathways underlying the cytoskeletal restraints of this homotypic adhesion molecule. We observed that ALCAM-mediated adhesion induced by cytoskeleton-disrupting agents is accompanied by activation of the small GTPases RhoA, Rac1 and Cdc42. Interestingly, unlike adhesion mediated by integrins or cadherins, ALCAM-mediated adhesion appears to be independent of Rho-like GTPase activity. By contrast, we demonstrated that protein kinase C (PKC) plays a major role in ALCAM-mediated adhesion. PKC inhibition by chelerythrine chloride and myristoylated PKC pseudosubstrate, as well as PKC downregulation by PMA strongly reduce cytoskeleton-dependent ALCAM-mediated adhesion. Since serine and threonine residues are dispensable for ALCAM-mediated adhesion and ALCAM is not phosphorylated, we can rule out that ALCAM itself is a direct PKC substrate. We conclude that PKCalpha plays a dominant role in cytoskeleton-dependent avidity modulation of ALCAM.
Subject: UMCN 1.4: Immunotherapy, gene therapy and transplantation
UMCN 5.3: Cellular energy metabolism
Organization: Tumorimmunology
UMCN Extern
Biochemistry (UMCN)
Cell Biology (UMCN)
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/57147

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