By Nord F F (ed)
Advances in Enzymology and comparable parts of Molecular Biology is a seminal sequence within the box of biochemistry, providing researchers entry to authoritative stories of the newest discoveries in all components of enzymology and molecular biology. those landmark volumes date again to 1941, delivering an unmatched view of the ancient improvement of enzymology. The sequence deals researchers the most recent knowing of enzymes, their mechanisms, reactions and evolution, roles in complicated organic strategy, and their program in either the laboratory and undefined. each one quantity within the sequence beneficial properties contributions through best pioneers and investigators within the box from world wide. All articles are rigorously edited to make sure thoroughness, caliber, and clarity.
With its wide selection of issues and lengthy historic pedigree, Advances in Enzymology and comparable parts of Molecular Biology can be utilized not just by means of scholars and researchers in molecular biology, biochemistry, and enzymology, but in addition through any scientist drawn to the invention of an enzyme, its homes, and its functions.
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Additional info for Advances in Enzymology and Related Areas of Molecular Biology, Volume 29
7,17,35,4345) as mechanisms for the facilitation of diffusion by biological carrier systems, and it has been pointed out that such processes differ fundamentally from the type of process involving a circulating carrier (26) or bonding relationship (46). A. MOBILE VERSUS FIXED CARRIERS The main relevant differences between the mobile and the fixed types of carriers have been considered in the context of electron and hydrogen transport through the respiratory chain by Chance et a]. (47). They compared the current flow and fluid flow models of Holton (48) and Lundegardh (49) with the normal kinetic oxidoreduction model, and pointed out that the latter consists of a series of bimolecular reactions, while the former type of model is equivalent to a unimolecular process.
A. Mobile versus Fixed carriers. . . . . . . . . . . . . . . . B. The Carrier Center.. . . . IV. Secondary Translocation. . . . . . . . . . . . . . . . . . . A. Noncoupled Solute Translocation : Uniport . . . . . . . 1. Circulating Carrier Type Uniport . . . . . . . . . . . . 2. “Single Channel” or “Pore” Type Uniport. B. Anti-Coupled Solute Translocation: Antiport. . . . . . . . . C. Sym-Coupled Solute Translocation: Symport.
Cleland, W. , Biochim. Biophys. Acta, 67,173 (1963). 6. Atkinson, M. , Jackson, J. , and Morton, R. , Biochem. , 80, 318 (1961). 7. , Goldman, D. , and Cleland, W. , J . Biol. , 840,3399 (1965). 8. Wratten, C. , and Cleland, W. , Biochemistry, 4,2442 (1965). 9. Wratten, C. , and Cleland, W. , Biochemistry, 8,935 (1963). 10. Henson, C. , and Cleland, W. , Biochemistry, 3,338 (1964). 11. Plowman, K. , and Cleland, W. , 86,340 (1966). 12. Morrison, J. , and Cleland, W. , J . Biol. , 841,673 (1966).