首页> 美国卫生研究院文献>Biochemical Journal >Azide-binding studies reveal type 3 copper heterogeneity in ascorbate oxidase from the green zucchini squash (Cucurbita pepo).
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Azide-binding studies reveal type 3 copper heterogeneity in ascorbate oxidase from the green zucchini squash (Cucurbita pepo).

机译:叠氮化物结合研究揭示了绿色西葫芦南瓜(南瓜)的抗坏血酸氧化酶中的3型铜异质性。

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摘要

Titration of native ascorbate oxidase from green zucchini squash (Cucurbita pepo) with azide in 0.1 M-phosphate buffer, pH 6.8, exhibits a biphasic spectral behaviour. Binding of the anion with 'high affinity' (K greater than 5000 M-1) produces a broad increase of absorption in the 400-500 nm region (delta epsilon approximately 1000 M-1.cm-1) and c.d. activity in the 300-450 nm region, whereas azide binding with 'low affinity' (K approximately 100 M-1) is characterized by an intense absorption band at 420 nm (delta epsilon = 6000 M-1.cm-1), corresponding to negative c.d. activity and a decrease of absorption at 330 nm (delta epsilon = -2000 M-1.cm-1). The high-affinity binding involves a minor fraction of the protein containing Type 3 copper in the reduced state, and the spectral features of this azide adduct can be eliminated by treatment of the native enzyme with small amounts of H2O2, followed by dialysis before azide addition. As shown by e.s.r. spectroscopy, Type 2 copper is involved in both types of binding, its signal being converted into that of a species with small hyperfine splitting constant [12 mT (approximately 120 G)] in the case of the low-affinity azide adduct. The spectral similarities of the two types of azide adducts with the corresponding adducts formed by native laccase, which also exhibits Type 3 copper heterogeneity, are discussed.
机译:在0.1 M磷酸盐缓冲液(pH 6.8)中用叠氮化物滴定绿色西葫芦南瓜(西葫芦)中的天然抗坏血酸氧化酶,显示出双相光谱行为。阴离子与“高亲和力”(K大于5000 M-1)的结合在400-500 nm区域(δepsilon约为1000 M-1.cm-1)产生大幅度的吸收,c.d。活性在300-450 nm范围内,而叠氮化物以“低亲和力”(K约为100 M-1)结合的特征是在420 nm处有很强的吸收带(δepsilon = 6000 M-1.cm-1),对应到负CD活性和330 nm处的吸收减少(δepson = -2000 M-1.cm-1)。高亲和力结合涉及还原状态的一小部分含有3型铜的蛋白质,这种叠氮化物加合物的光谱特征可以通过用少量H2O2处理天然酶,然后在加入叠氮化物之前进行透析来消除。 。如e.s.r.光谱学中,两种类型的结合都涉及2型铜,在低亲和性叠氮化物加合物的情况下,其信号会转换为超细分裂常数较小(12 mT(约120 G))的物种。讨论了两种叠氮化物加合物与天然漆酶形成的相应加合物在光谱上的相似性,它们也表现出3型铜异质性。

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