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1 amyl alcohol dehydrogenases, a nitrilase and glyoxalase II.
2 r zinc binding site similar to that found in glyoxalase II.
3 his study and crystallographic data on human glyoxalase II.
4 , which in turn is converted to D-lactate by glyoxalase-II.
5 essing either GLY1 or GLY2 exhibit increased glyoxalase II activity, confirming that they do, in fact
6              It shares highest homology with glyoxalase II but does not catalyze the same reaction.
7 ime that the cytoplasmic form of Arabidopsis glyoxalase II contains an iron-zinc binuclear metal cent
8                          The cDNA encoding a glyoxalase II cytoplasmic isozyme (GLY2) was also isolat
9 , we found that the GLX2 gene, which encodes glyoxalase II enzyme, is up-regulated by p63 and p73.
10                                        Human glyoxalase II (Glx2) was overexpressed in rich medium an
11 lizes glyoxalase I (GlxA, formerly YwbC) and glyoxalase II (GlxB, formerly YurT) to convert MG to d-l
12 ause of its role in chemical detoxification, glyoxalase II has been studied as a potential anti-cance
13 alues for the activities of glyoxalase I and glyoxalase II in lysed erythrocytes and the steady-state
14  that can be used for the rational design of glyoxalase II inhibitors.
15                                              Glyoxalase II is part of the glutathione-dependent glyox
16            An overall reaction mechanism for glyoxalase II is proposed based on the mutational and ki
17  of Arabidopsis we identified the gene for a glyoxalase II isozyme (GLY1) that appears to be mitochon
18                        The identification of glyoxalase II isozymes that are differentially expressed
19                                              Glyoxalase II participates in the cellular detoxificatio
20 ern blot and sequence analyses indicate that glyoxalase II proteins are encoded by at least two multi
21 ty, confirming that they do, in fact, encode glyoxalase II proteins.
22 to the active site and reaction mechanism of glyoxalase II that can be used for the rational design o
23 , a detailed mutational study of Arabidopsis glyoxalase II was conducted.

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