Advances in Enzymology and Related Areas of Molecular by Alton Meister

Molecular Biology

By Alton Meister

Site visitors ATPases: A Superfamily of delivery Proteins working from Escherichia coli to people (G. Ames, et al.).

The respiration Burst Oxidase (B. Babior).

seasoned- and Antioxidant capabilities of Quinones and Quinone Reductase in Mammalian Cells (E. Cadenas & P. Hochstein).

The Redox facilities of Ribonucleotide Reductase of Escherichia coli (M. Fontecave, et al.).

lengthy variety Intramolecular associated services within the Calcium delivery ATPase (G. Inesi, et al.).

Hydrogen-Bonding in Carbohydrates and Hydrate Inclusion Compounds (G. Jeffrey).

Methylation of mRNA (P. Narayan & F. Rottman).

Mammalian Nitric Oxide Synthases (D. Stuehr & O. Griffith).


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Extra resources for Advances in Enzymology and Related Areas of Molecular Biology, Volume 65

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1984). K. Fry, D . , Kuby, S. , and Mildvan, A. S. (1986). ATP-binding site of adenylate kinase: mechanistic implications of its homology with ras-encoded p21, F1-ATPase, and other nucleotide-binding proteins, Proc. Nail. Actid. Sci. 907911. , and Beckwith, J. (1988). Genetic analysis of the membrane insertion and topology of MalF, a cytoplasmic membrane protein of Escherichia coli, J. Mol. B i d . , 200, 501-511. , Higgins, C. , Ames, G. , and Nikaido, K. (1982). Extensive homology between membrane-associated components of histidine and maltose transport systems of Salmonella typhimurium and Eschcrichiri coli, J .

Membrane translocation of proteins without hydrophobic signal peptides, in Current Opinions in Cell Biology, 2 , 617-624. , and Boos, W. (1991). The activities of the Escherichia co1i Ma1 K protein in maltose transport, regulation, and inducer exclusion can be separated by mutations. J . Bacteriol. 173, 21802186. Kustu, S. G. and Ames, G. -L. (1974). The histidine-binding protein J , a histidine transport component, has two different functional sites, J . Biol. , 249, 69766983. 46 CilOVANNA AMES ET AL.

The histidine transport system of Salmonella ryphimurium, in Current Topics in Membranes und Transport, Vol. 23, Academic Press, New York, pp. 103-119. Ames, G. -L. (l986a). Bacterial periplasmic transport systems: Structure, mechanism, and evolution, Ann. Rev. , 55, 397-425. Ames, G. -L. (1986b). The basis of multidrug resistance in mammalian cells: Homology with bacterial transport, Cell, 47, 323-324. Ames, G . -L. (1990a). Energetics of periplasmic transport systems: the histidine permease as a model system, Res.

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