Preferential Proteolysis and Activation of Oxidatively Modified Liver Microsomal Glutathione S-Transferase of Rat
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概要
- 論文の詳細を見る
Proteolytic activation of oxidatively modified microsomal GSH S-transferase (GSTm) was investigated. When GSTm was incubated with diamide [diazenedicarboxylic acid bis (N, N-dimethylamide)] or hydrogen peroxide in the presence or absence of glutathione, a protein-glutathione mixed-disulfide and a dimer of the enzyme were formed with a concomitant increase in transferase activity. Although control GSTm was activated 3.4-fold by 3μg/ml of trypsin, the monomeric form of the transferase in which the sulfhydryl group was modified by mixed-disulfide bond formation or by covalent binding with N-ethylmaleimide was futher stimulated by lower concentrations of trypsin than that used in the control. In contrast, no activation of the dimeric transferase was observed with any concentration of trypsin. In immunoblot analysis, a proteolytic product (fragment A) from the dimer transferase was detected after treatment of oxidant-modified microsomes with low concentrations of trypsin, whereas the fragment (fragment B) from the unmodified-monomeric enzyme was observed by high concentrations of trypsin. These results show that oxidatively modified GSTm is sensitive to proteolytic attack by trypsin and that only monomeric transferase is further activated by limited proteolysis.
- 公益社団法人日本薬学会の論文
- 1996-02-15
著者
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Aniya Yoko
Laboratory of Molecular Genetics and Pharmacology, School of Health Sciences, Faculty of Medicine, U
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Aniya Yoko
Laboratory Of Functional And Molecular Pharmacology Graduate School Of Medicine University Of The Ry
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Aniya Yoko
Laboratory Of Physiology And Pharmacology School Of Health Sciences Faculty Of Medicine:research Cen
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Shimoji M
Univ. Ryukyus Okinawa Jpn
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Shimoji Miyuki
Laboratory Of Functional And Molecular Pharmacology Graduate School Of Medicine University Of The Ry
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ANDERS M.W.
Department of Pharmacology, University of Rochester
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Anders M.w.
Department Of Pharmacology University Of Rochester
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