Cell behaviour : control and mechanism of motility /

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Bibliographic Details
Meeting name:Abercrombie Conference on Cell Behaviour (4th : 1997 : St. Catherine's College, Oxford)
Imprint:Princeton, N.J. : Princeton University Press, c1999.
Description:xiv, 346 p. : ill. (some col.) ; 26 cm.
Language:English
Series:Biochemical Society symposia, 0067-8964 ; no. 65
Biochemical Society (Great Britain). Symposium. Biochemical Society symposia ; no. 65.
Subject:
Format: Print Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/3790220
Hidden Bibliographic Details
Other authors / contributors:Jones, Gareth E., 1947-
Dunn, Graham, 1944-
Lackie, J. M.
ISBN:0691009503
Notes:"4th Abercrombie Conference on Cell Behaviour held at St. Catherine's College, Oxford, 28 September-1 October 1997"
Includes bibliographies and index.

MARC

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300 |a xiv, 346 p. :  |b ill. (some col.) ;  |c 26 cm. 
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500 |a "4th Abercrombie Conference on Cell Behaviour held at St. Catherine's College, Oxford, 28 September-1 October 1997" 
504 |a Includes bibliographies and index. 
505 0 |a Sect. 1. Introduction -- Patterns of cellular activities based on protein sorting in cell motility, endocytosis and cytokinesis -- Sect. 2. Motile responses -- New depths in cell behaviour: reactions of cells to nanotopography -- Self-organization of tissue-equivalents: the nature and role of contact guidance -- Extracellular regulation of cancer invasion: the E-cadherin-catenin and other pathways -- Sect. 3. Signal transduction -- Towards a structural model of an integrin -- Integrin-mediated cell adhesion: the cytoskeletal connection -- Wnt factors in axonal remodelling and synaptogenesis -- Rho family proteins and cell migration -- Rho-like GTPases: their role in cell adhesion and invasion -- 
505 0 |a Sect. 4. Cytoskeletal dynamics -- Microtubule involvement in regulating cell contractility and adhesion-dependent signalling: a possible mechanism for polarization of cell motility -- Organization and polarity of actin filament networks in cells: implications for the mechanism of myosin-based cell motility -- Network contraction model for cell translocation and retograde flow -- Centrosomes, microtubules and cell migratin -- Cell migration as a five-step cycle -- Sect. 5. Dynamics of motility -- Cytoskeletal protein mutations and cell motility in Dictyostelium -- Cell crawling two decades after Abercombie -- Using molecular genetics as a tool in understanding crawling cell locomotion in myoblasts -- Forces in cell locomotion -- Sect. 6. Prospects -- A dozen questions about how tissue cells crawl. 
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650 2 |a Cell Movement  |v Congresses. 
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