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R N Armstrong

Showing results (41-50 of 54) with videos related to

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Proceedings of the National Academy of Sciences of the United States of America|August 6, 1996
Location of a potential transport binding site in a sigma class glutathione transferase by x-ray crystallographyX Ji, E C von Rosenvinge, W W Johnson, et al.
Biochemistry|July 25, 1989
Formation of the 1-(S-glutathionyl)-2,4,6-trinitrocyclohexadienate anion at the active site of glutathione S-transferase: evidence for enzymic stabilization of sigma-complex intermediates in nucleophilic aromatic substitution reactionsG F Graminski, P H Zhang, M A Sesay, et al.
Biochemistry|October 27, 1992
Modular mutagenesis of exons 1, 2, and 8 of a glutathione S-transferase from the mu class. Mechanistic and structural consequences for chimeras of isoenzyme 3-3P Zhang, S Liu, S O Shan, et al.
Biochemistry|March 16, 1993
Interaction of hepatic microsomal epoxide hydrolase derived from a recombinant baculovirus expression system with an azarene oxide and an aziridine substrate analogueG M Lacourciere, V N Vakharia, C P Tan, et al.
Biochemistry|April 25, 1995
Three-dimensional structure, catalytic properties, and evolution of a sigma class glutathione transferase from squid, a progenitor of the lens S-crystallins of cephalopodsX Ji, E C von Rosenvinge, W W Johnson, et al.
Biochemistry|October 4, 2000
Equilibrium folding of dimeric class mu glutathione transferases involves a stable monomeric intermediateJ A Hornby, J K Luo, J M Stevens, et al.
Chemical Research in Toxicology|August 21, 2001
Conjugation of haloalkanes by bacterial and mammalian glutathione transferases: mono- and dihalomethanesJ B Wheeler, N V Stourman, R Thier, et al.
Biochemistry|February 8, 1994
Structure and function of the xenobiotic substrate binding site of a glutathione S-transferase as revealed by X-ray crystallographic analysis of product complexes with the diastereomers of 9-(S-glutathionyl)-10-hydroxy-9,10-dihydrophenanthreneX Ji, W W Johnson, M A Sesay, et al.
Biochemistry|April 16, 1996
First-sphere and second-sphere electrostatic effects in the active site of a class mu gluthathione transferaseG Xiao, S Liu, X Ji, et al.
The Journal of Biological Chemistry|October 28, 1994
Active-site tyrosyl residues are targets in the irreversible inhibition of a class Mu glutathione transferase by 2-(S-glutathionyl)-3,5,6-trichloro-1,4-benzoquinoneJ H Ploemen, W W Johnson, S Jespersen, et al.
Pageof 6

Showing results (41-50 of 54) with videos related to

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Pageof 6
Proceedings of the National Academy of Sciences of the United States of America|August 6, 1996
Location of a potential transport binding site in a sigma class glutathione transferase by x-ray crystallographyX Ji, E C von Rosenvinge, W W Johnson, et al.
Biochemistry|July 25, 1989
Formation of the 1-(S-glutathionyl)-2,4,6-trinitrocyclohexadienate anion at the active site of glutathione S-transferase: evidence for enzymic stabilization of sigma-complex intermediates in nucleophilic aromatic substitution reactionsG F Graminski, P H Zhang, M A Sesay, et al.
Biochemistry|October 27, 1992
Modular mutagenesis of exons 1, 2, and 8 of a glutathione S-transferase from the mu class. Mechanistic and structural consequences for chimeras of isoenzyme 3-3P Zhang, S Liu, S O Shan, et al.
Biochemistry|March 16, 1993
Interaction of hepatic microsomal epoxide hydrolase derived from a recombinant baculovirus expression system with an azarene oxide and an aziridine substrate analogueG M Lacourciere, V N Vakharia, C P Tan, et al.
Biochemistry|April 25, 1995
Three-dimensional structure, catalytic properties, and evolution of a sigma class glutathione transferase from squid, a progenitor of the lens S-crystallins of cephalopodsX Ji, E C von Rosenvinge, W W Johnson, et al.
Biochemistry|October 4, 2000
Equilibrium folding of dimeric class mu glutathione transferases involves a stable monomeric intermediateJ A Hornby, J K Luo, J M Stevens, et al.
Chemical Research in Toxicology|August 21, 2001
Conjugation of haloalkanes by bacterial and mammalian glutathione transferases: mono- and dihalomethanesJ B Wheeler, N V Stourman, R Thier, et al.
Biochemistry|February 8, 1994
Structure and function of the xenobiotic substrate binding site of a glutathione S-transferase as revealed by X-ray crystallographic analysis of product complexes with the diastereomers of 9-(S-glutathionyl)-10-hydroxy-9,10-dihydrophenanthreneX Ji, W W Johnson, M A Sesay, et al.
Biochemistry|April 16, 1996
First-sphere and second-sphere electrostatic effects in the active site of a class mu gluthathione transferaseG Xiao, S Liu, X Ji, et al.
The Journal of Biological Chemistry|October 28, 1994
Active-site tyrosyl residues are targets in the irreversible inhibition of a class Mu glutathione transferase by 2-(S-glutathionyl)-3,5,6-trichloro-1,4-benzoquinoneJ H Ploemen, W W Johnson, S Jespersen, et al.
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