首页> 外文OA文献 >Titrations with ferrocyanide of japanese-lacquer-tree (Rhus vernicifera) laccase and of the type 2 copper-depleted enzyme. Interrelation of the copper sites.
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Titrations with ferrocyanide of japanese-lacquer-tree (Rhus vernicifera) laccase and of the type 2 copper-depleted enzyme. Interrelation of the copper sites.

机译:日本漆树漆酶和2型贫铜酶用亚铁氰化物滴定。铜位点的相互关系。

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摘要

1. Redox titrations are reported of the metal centres in Japanese-lacquer-tree (Rhus vernicifera) laccase with ferrocyanide. 2. The redox potential of Type 1 Cu was found to increase with ferrocyanide concentration up to a limiting value similar to that for the Type 1 Cu in Type 2 Cu-depleted enzyme (which is independent of ferrocyanide concentration). 3. The redox potential of the two-electron acceptor (Type 3 Cu) is also independent of ferrocyanide concentration in Type 2 Cu-depleted enzyme and lower than values reported for the native enzyme. 4. The two-electron acceptor is present in the oxidized state in the Type 2 Cu-depleted enzyme, though the latter lacks the 330 nm absorption band. 5. The redox potential of Type 2 Cu also depends on ferrocyanide concentration, at least in the presence of azide. 6. The redox potentials are affected by freezing the solutions and/or addition of azide, the latter binding to Type 2 Cu with affinity dependent on the redox state of the two-electron acceptor.
机译:1.据报道,日本漆树(Rhus vernicifera)漆酶中的金属中心与亚铁氰化物的氧化还原滴定法。 2.发现1型铜的氧化还原电位随亚铁氰化物浓度的增加而增加,直至达到与2型铜贫化酶中1型铜的极限值相似的极限值(与亚铁氰化物浓度无关)。 3.双电子受体(3型铜)的氧化还原电位也与2型铜贫化酶中的亚铁氰化物浓度无关,并且低于报告的天然酶值。 4.在贫2型铜酶中,二电子受体以氧化态存在,尽管后者缺乏330 nm的吸收带。 5. 2型铜的氧化还原电势也取决于亚铁氰化物的浓度,至少在叠氮化物存在的情况下。 6.冻结溶液和/或添加叠氮化物会影响氧化还原电势,叠氮化物与2型Cu的结合力取决于两电子受体的氧化还原状态。

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