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Titlebook: Structure, Function, and Regulation of Molecules Involved in Leukocyte Adhesion; Peter E. Lipsky (Professor),Robert Rothlein (Disti Confer

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書目名稱Structure, Function, and Regulation of Molecules Involved in Leukocyte Adhesion
編輯Peter E. Lipsky (Professor),Robert Rothlein (Disti
視頻videohttp://file.papertrans.cn/881/880278/880278.mp4
圖書封面Titlebook: Structure, Function, and Regulation of Molecules Involved in Leukocyte Adhesion;  Peter E. Lipsky (Professor),Robert Rothlein (Disti Confer
描述Leukocyte adhesion molecules have been the subject of intense basic and preclinical research. Results from clinical trials obtained sofar with antibodies directed towards these surface proteins offer promise for the prevention of graft rejection and effective treatment of acute and chronic inflammatory disease. This volume presents a comprehensive review of contemporary research on the structure, function and regulation of leukocyte adhesion molecules and their ligands, from the molecular to the clinical level. The blend of basic science and clinical applications presented in Structure, Function and Regulation of Molecules Involved in Leukocyte Adhesion provides clear evidence of the biological importance of cell-cell interactions and the many potential clinical dividends afforded by understanding the molecular basis of cell adhesion. It will appeal to a broad range of readers in immunology and cell biology.
出版日期Conference proceedings 1993
關(guān)鍵詞Antigen; Migration; Regulation; biology; cell biology; proteins; signal transduction; infectious diseases
版次1
doihttps://doi.org/10.1007/978-1-4613-9266-8
isbn_softcover978-1-4613-9268-2
isbn_ebook978-1-4613-9266-8
copyrightSpringer-Verlag New York Inc. 1993
The information of publication is updating

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Function of a Soluble Human ,2 Integrin CD11b/CD18may have great therapeutic benefit. However, given the myriad of proteinases, oxidants, and cationic proteins produced by phagocytes after activation with chemoattractants and cytokines and during phagocytosis (2), this goal has proven elusive.
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Functional Mapping and Regulation of VLA-4 Adhesion ActivitiesECM) components or with cellular ligands (4,10,11), and these adhesive processes appear to be essential for lymphocyte homing (3,4), embryogenesis and histogenesis (12), leukocyte activation (13–16), cytotoxic T lymphocyte activity (17,18), and lymphohemopoiesis (19).
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Leukocyte Integrin Activationth a common . . subunit (1). A feature of the N terminus of the . subunit is the seven domains of ~60 amino acids (domains I-VII) of which the last three or four are homologous to divalent cation binding or EF-hand-type sites. Integrins are known to require bound divalent cations such as Mg. and/or
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An Antibody That Promotes Adhesion Events Mediated by Both LFA-1 and CR3 in many cell-cell interactions (reviewed in 1). This family forms a subset of the integrin supergene family and its members show the typical integrin noncovalently associated . heterodimer structure (2). There are three members of the family; LFA-1 (CD11a/CD18), CR3 (CD11b/ CD18), and p150.95 (CD11
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