The Molecular Basis of Biological Transport (eBook, PDF)
Proceedings of the Miami Winter Symposia, January 10-11, 1972, Organized by the Department of Biochemistry, University of Miami School of Medicine, Miami, Florida Redaktion: Woessner, J. F.; Huijing, F.
The Molecular Basis of Biological Transport (eBook, PDF)
Proceedings of the Miami Winter Symposia, January 10-11, 1972, Organized by the Department of Biochemistry, University of Miami School of Medicine, Miami, Florida Redaktion: Woessner, J. F.; Huijing, F.
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Miami Winter Symposia, Volume 3: The Molecular Basis of Biological Transport covers the proceedings of the symposium held in Miami on January 10-11, 1972. The book discusses the life of Feodor Lynen and his lecture on carbon dioxide fixation; the biochemical significance of the anion transporting systems of mitochondria, especially that of amino acid systems; and the possible functional roles of transport through membrane junctions. The text also describes the role of chlorotetracycline as a fluorescent chelate probe for monitoring Ca++ and Mg++ binding to biological membranes; and the effects…mehr
Miami Winter Symposia, Volume 3: The Molecular Basis of Biological Transport covers the proceedings of the symposium held in Miami on January 10-11, 1972. The book discusses the life of Feodor Lynen and his lecture on carbon dioxide fixation; the biochemical significance of the anion transporting systems of mitochondria, especially that of amino acid systems; and the possible functional roles of transport through membrane junctions. The text also describes the role of chlorotetracycline as a fluorescent chelate probe for monitoring Ca++ and Mg++ binding to biological membranes; and the effects of carcinogens and steroid hormones on the structural apparatus involved in protein synthesis and export. The nature and regulation of hexose uptake by Escherichia coli; the role of bacterial phosphotransferase system in sugar transport; and energy coupling to lactose transport in Escherichia coli are also considered. The book further tackles citrate transport by Bacillus subtilis; leucine transport in Escherichia coli; and the transport mechanism in isolated bacterial cytoplasmic membrane vesicles. Biochemists, microbiologists, pharmacologists, physiologists, and people involved in enzyme and metabolic research will find the book invaluable.
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