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从脆弱拟杆菌中分离含铁超氧化物歧化酶:重构为含锰酶。

Isolation of iron-containing superoxide dismutase from Bacteroides fragilis: reconstitution as a Mn-containing enzyme.

作者信息

Gregory E M, Dapper C H

出版信息

Arch Biochem Biophys. 1983 Jan;220(1):293-300. doi: 10.1016/0003-9861(83)90413-7.

Abstract

Superoxide dismutase from the anaerobe Bacteroides fragilis has been purified to apparent homogeneity. The protein, Mr 42,000, is a dimer of equally sized subunits joined by noncovalent interactions. Metal analysis of the native enzyme revealed 1.8-1.9 g-atoms Fe, 0.2 g-atoms Zn, and less than 0.05 g-atoms Mn per mole dimer in a preparation whose specific activity was 1200 U/mg. Exposure of the enzyme to guanidinium chloride plus 8-hydroxyquinoline (T. Kirby, J. Blum, I. Kahane, and I. Fridovich, 1980, Arch. Biochem. Biophys. 201, 551-555) resulted in complete loss of enzymatic activity. Activity could be restored by dialysis of the denatured apoprotein against Tris buffer containing either ferrous ammonium sulfate or manganous chloride. The Fe-reconstituted enzyme was inhibited by 1 mM azide and inactivated by H2O2 in a manner similar to the native enzyme. Mn-reconstituted enzyme was inhibited by azide but resisted inactivation by H2O2 comparable to other purified manganese-containing superoxide dismutases. The manganese reconstituted protein contained approximately 1 gm-atom Mn/mol dimer. Zn ion potently inhibited reconstitution of the denatured apoprotein by either Mn or Fe and bound to the protein with a stoichiometry of 2-3 g-atoms/mol dimer.

摘要

来自厌氧菌脆弱拟杆菌的超氧化物歧化酶已被纯化至表观均一性。该蛋白质分子量为42,000,是由非共价相互作用连接的等大小亚基组成的二聚体。对天然酶进行金属分析发现,在比活性为1200 U/mg的制剂中,每摩尔二聚体含有1.8 - 1.9克原子铁、0.2克原子锌和少于0.05克原子锰。将该酶暴露于氯化胍加8 - 羟基喹啉中(T. Kirby、J. Blum、I. Kahane和I. Fridovich,1980年,《生物化学与生物物理学档案》201, 551 - 555)会导致酶活性完全丧失。通过将变性的脱辅基蛋白透析到含有硫酸亚铁铵或氯化锰的Tris缓冲液中,可以恢复活性。铁重构的酶被1 mM叠氮化物抑制,并以与天然酶类似的方式被过氧化氢灭活。锰重构的酶被叠氮化物抑制,但与其他纯化的含锰超氧化物歧化酶相比,对过氧化氢的灭活具有抗性。锰重构的蛋白质每摩尔二聚体含有约1克原子锰。锌离子强烈抑制脱辅基蛋白由锰或铁进行的重构,并以2 - 3克原子/摩尔二聚体的化学计量比与蛋白质结合。

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