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Properties of cupric ions in benzylamine oxidase from pig plasma as studied by magnetic-resonance and kinetic methods.

机译:通过磁共振和动力学方法研究了猪血浆中苄胺氧化酶中铜离子的性质。

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摘要

Benzylamine oxidase from pig plasma has been studied by a variety of chemical and physical techniques. 1. Analytical ultracentrifugation, gel electrophoresis and isoelectric-focusing studies suggest that the enzyme is composed of two subunits with closely similar primary structures. 2. E.s.r. and n.m.r. measurements show that the enzyme contains two well-separated (greater than 0.6 nm) Cu2+ ions at chemically distinct sites. Each Cu2+ ion is coordinated by two water molecules, one 'axial' and the other 'equatorial'. Both water molecules undergo fast exchange (10(5)--10(8) s-1) with solvent and are deprotonated in the pH range 8--9, but only the equatorial water molecule is displaced by the inhibitors N3- and CN-. 3. Kinetic and e.s.r. measurements show that azide and cyanide compete against O2 binding and also make the two Cu2+ sites identical. It is concluded that Cu2+ must participate in the re-oxidation of reduced enzyme by molecular O2.
机译:猪血浆中的苄胺氧化酶已通过多种化学和物理技术进行了研究。 1.超离心分析,凝胶电泳和等电聚焦研究表明,该酶由两个具有相似相似一级结构的亚基组成。 2. E.s.r.和n.m.r.测量结果表明,该酶在化学上不同的位点包含两个分离良好的(大于0.6 nm)Cu 2+离子。每个Cu 2+离子由两个水分子配位,一个是“轴向”,另一个是“赤道”。两个水分子均与溶剂快速交换(10(5)-10(8)s-1),并在pH范围8--9内被去质子化,但只有赤道水分子被抑制剂N3-和CN取代- 3.动能和e.s.r.测量结果表明,叠氮化物和氰化物竞争与O2的结合,并使两个Cu2 +位点相同。结论是,Cu2 +必须参与分子氧对还原酶的再氧化作用。

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