By C. Tilcock, S. Eastman, D. Fisher (auth.), Shinpei Ohki (eds.)
Membrane interplay is a huge study zone regarding quite a few disciplines. A symposium entitled "Cell and version Membrane Interactions" which happened in Boston, MA through the a hundred and fifty fifth American Chemical Society assembly, April 25, 1990, all in favour of membrane adhesion and fusion. the subjects have been explored in reports regarding lipids, virus envelopes and telephone membranes. in particular mentioned, have been the jobs of polymers, lipids, and proteins on those membrane interactions. Fusion of membrane is a crucial molecular occasion which performs a pivotal function in lots of dynamic mobile strategies, similar to exocytosis, endocytosis, membrane genesis, viral an infection strategies, and so on. the method comprises adhesion of the mem branes, fusion, and eventually reorganization of the elements of the 2 membranes. the fundamental proposal shared in the course of the symposium used to be that membrane hydro phobicity, specially neighborhood membrane hydrophobicity is among the very important elements contributing to membrane fusion. many of the papers are accrued the following and they're prepared nearly within the similar order as they have been awarded on the sympo sium. those papers are the main up to date and consultant paintings on the leading edge in each one membrane interplay box. I essentially desire the reader will achieve extra knowing on membrane interactions particularly, membrane and vesicle fusion phenomena via this symposium court cases volume.
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Additional resources for Cell and Model Membrane Interactions
Horn, M. E. and Widholm, J. , 1981, Hybrid shoot formation from fused Dancus carota and Daycus capillifoljus protoplasts, J. , 104:459. , Nevo, A. , 1959, Interactions of basic polyelectrolytes with the red blood cell 2. Agglutination of red blood cells by polymeric bases. Biochim. Biophys. Acta, 33:120. , Hadesman, R. A. and Steck, T. , 1982, Role of the reticulum in the stability and shape of the isolated human-erythrocyte membrane, ~. , 92:714. Leiken, S. , Kozlov, M. , Chernomordik, V. S.
1976). , 1976). Since, despite the smaller loss of charge, pronase is more efficient than neuraminidase in facilitating erythrocyte agglutination by a variety of agents pronase may, in addition to reducing electrostatic repulsion, also act by reducing steric hindrance (Sec. , 1976). , 1975). Increased hydrophobicity enhances non-specific adhesion of cells to surfaces (Rosenberg and Kjelleberg, 1987). The increased hydrophobicity of pronase pretreated cells may augment the effect of reduced steric and electrostatic repulsion in modifying cell-cell repulsion.
S. , 1984, The dependence of cell partition in two-polymer aqueous phase systems on the electrostatic potential between the phases, Bjochem. Soc. , 12:1085. in: "Biophysics of the cell surface" R. Glaser, and D. , Springer-Verlag, Berlin. Gokhale, S. M. and Mehta, M. , 1987, Glycophorin A interferes in the agglutination of human erythrocytes by concanavalin A, Biochem. , 241:505. Grant, C. W. M. and Peters, M. , 1984, Lectin-membrane interactions: Information from model systems, Bjocbjm. Bjophys.
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