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322 / Biochemistry Aminopeptidases

Bogitsh, B.J. and Dresden, M.D. (1983) Schistosoma japonicum biochemistry and cytochemistry of dipep-tidyl aminopeptidase-ll-like activity in adults. Experimental Parasitology 60, 1 63-1 70. [Pg.364]

Garner, C.W.J., and F.J. Behai. 1974. Human liver aminopeptidase. Role of metal ions in mechanism of action. Biochemistry 13 3227. [Pg.103]

Luciani, N., et al. 1998. Characterization of Glu350 as a critical residue involved in the N-terminal amine binding site of aminopeptidase N (EC 3.4.11.2) Insights into its mechanism of action. Biochemistry 37 686. [Pg.107]

N Strater, WN Lipscomb (1995) Two-metal ion mechanism of bovine lens leucine aminopeptidase active site solvent structure and binding mode of L-leucinal, a gem-diolate transition state analogue, by X-ray crystallography, Biochemistry 34 14792-14800... [Pg.395]

Lowther, W. T., Zhang, Y., Sampson, P. B., et al. (1999) Insights into the mechanism of Escherichia coli methionine aminopeptidase from the structural analysis of reaction products and phosphorus-based transition-state analogues. Biochemistry, 38(45), 14810-14819. [Pg.462]

Yutani K, Takayama G, Goda S, Yamagata Y, Maid S, Namba K, Tsunasawa S, C asahara K (2000) The process of amyloid-like fibril formation by methionine aminopeptidase from a hyperthermophile, Pyro-coccus furiosus. Biochemistry 39 2769-2777... [Pg.78]


See other pages where 322 / Biochemistry Aminopeptidases is mentioned: [Pg.563]    [Pg.509]    [Pg.509]    [Pg.86]    [Pg.307]    [Pg.332]    [Pg.334]    [Pg.563]    [Pg.458]    [Pg.697]    [Pg.896]    [Pg.896]   


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