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The Journal of Biological Chemistry|December 6, 1996
Heterotetramers of human liver mitochondrial (class 2) aldehyde dehydrogenase expressed in Escherichia coli. A model to study the heterotetramers expected to be found in Oriental peopleX Wang, S Sheikh, D Saigal, et al.Biochemical Pharmacology|February 21, 1997
Allosteric inhibition of human liver aldehyde dehydrogenase by the isoflavone prunetinS Sheikh, H WeinerBiochemistry|January 10, 1995
Involvement of glutamate 268 in the active site of human liver mitochondrial (class 2) aldehyde dehydrogenase as probed by site-directed mutagenesisX Wang, H WeinerAlcohol and Alcoholism (Oxford, Oxfordshire). Supplement|January 1, 1994
Aldehyde dehydrogenase and acetaldehyde metabolismH Weiner, X WangThe Journal of Biological Chemistry|July 25, 1997
Involvement of glutamate 399 and lysine 192 in the mechanism of human liver mitochondrial aldehyde dehydrogenaseL Ni, S Sheikh, H WeinerThe Journal of Biological Chemistry|July 25, 1997
The potential roles of the conserved amino acids in human liver mitochondrial aldehyde dehydrogenaseS Sheikh, L Ni, T D Hurley, et al.European Journal of Biochemistry|April 1, 1997
Binding of thyroxine analogs to human liver aldehyde dehydrogenasesJ Zhou, H WeinerBiochemistry|September 29, 2000
Basis for half-of-the-site reactivity and the dominance of the K487 oriental subunit over the E487 subunit in heterotetrameric human liver mitochondrial aldehyde dehydrogenaseJ Zhou, H WeinerProtein Science : a Publication of the Protein Society|July 27, 2001
The N-terminal portion of mature aldehyde dehydrogenase affects protein folding and assemblyJ Zhou, H WeinerChemico-Biological Interactions|April 18, 2001
Subunit communication in tetrameric class 2 human liver aldehyde dehydrogenase as the basis for half-of-the-site reactivity and the dominance of the oriental subunit in a heterotetramerH Weiner, B Wei, J ZhouPageof 1,452