Dimeric Structure and Zinc Content of Bovine Liver Rhodanese

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Dimeric structure and zinc content of bovine liver rhodanese.

Evidence from gel filtration and sedimentation studies of crystalline bovine liver rhodanese indicated that the enzyme molecule of 37,000 molecular weight is a dimer. In the native state, this form is in rapid, pa-dependent equilibrium with the monomeric species. A stable dimer is formed under mild oxidizing conditions. Analysis of the protein by peptide mapping indicated that the monomers are ...

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Improved preparation of bovine liver rhodanese.

Chemical studies of rhodanese (thiosulfate : cyanide sulfurtransferase, EC 2.8.1.1) in this laboratory have prompted the development of a modified procedure for preparing the crystalline enzyme. The new method, which is based on the earlier procedure of S6rbo (1) as modified by Westley et al. (2-4), permits isolation in apparently monodisperse form of nearly 50% of the total rhodanese activity ...

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Acid pH-induced conformational changes in bovine liver rhodanese.

The enzyme rhodanese is greatly stabilized in the range pH 4-6, and samples at pH 5 are fully active after several days at 23 degrees C. This is very different from results at pH greater than 7, where there is significant loss of activity within 1 h. A pH-dependent conformational change occurs below pH 4 in a transition centered around pH 3.25 that leads slowly to inactive rhodanese at pH 3 (t ...

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In vitro Studying of Deferasirox Side effects on the Structure and the Function of Bovine Liver Catalase

Background & Objective: Oral chelators such as deferasirox are used to treat iron overload caused by blood transfusion. Considering the significant role of liver in detoxification and drug metabolism as well as the importance of catalase as a key enzyme in detoxification, this study was performed to evaluate the effect of deferasirox, which is an iron chelator on the structure and the synt...

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ژورنال

عنوان ژورنال: Journal of Biological Chemistry

سال: 1967

ISSN: 0021-9258

DOI: 10.1016/s0021-9258(18)99414-7