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钴酪氨酸酶:用钴取代粗糙脉孢菌酪氨酸酶的双核铜。

Cobalt tyrosinase: replacement of the binuclear copper of Neurospora tyrosinase by cobalt.

作者信息

Rüegg C, Lerch K

出版信息

Biochemistry. 1981 Mar 3;20(5):1256-62. doi: 10.1021/bi00508a032.

Abstract

The antiferromagnetically spin-coupled copper(II) pair in Neurospora tyrosinase was substituted by cobalt, yielding a stoichiometry of 2 mol of Co/mol of protein. The low magnitude of the high-spin Co(II) EPR signal indicates spin coupling of the two Co(II) ions similar to that observed in the native enzyme. The absorption spectrum with four transitions in the visible region of intermediate intensity (epsilon 607(670), epsilon 564(630), epsilon 526(465)), a shoulder at 635 nm, and the near-infrared bands at 1180 (epsilon 30) and 960 nm (epsilon 15) indicate tetrahedral coordination around the Co(II) center. The cobalt(II) tyrosinase is enzymatically inactive, and there is no evidence that it binds molecular oxygen. Upon addition of cyanide or the competitive tyrosinase inhibitors L-mimosine, benzoic acid, or benzhydroxamic acid te absorption spectrum changes in a characteristic manner. This optical perturbation shows that binding of these inhibitors (and presumably of the substrates) occurs at or near the metal site. One Co(II) ion can be removed preferentially by incubation with KCN at high pH, indicating the two ions not to be in an identical environment.

摘要

在嗜热栖热放线菌酪氨酸酶中,反铁磁自旋耦合的铜(II)对被钴取代,得到的化学计量比为每摩尔蛋白质含2摩尔钴。高自旋钴(II)电子顺磁共振信号的低强度表明两个钴(II)离子的自旋耦合与天然酶中观察到的相似。在可见光区域有四个中等强度跃迁(ε607(670)、ε564(630)、ε526(465))、635nm处有一个肩峰以及1180nm(ε30)和960nm(ε15)处有近红外带的吸收光谱表明钴(II)中心周围为四面体配位。钴(II)酪氨酸酶没有酶活性,也没有证据表明它能结合分子氧。加入氰化物或竞争性酪氨酸酶抑制剂L-含羞草碱、苯甲酸或苯甲羟肟酸后,吸收光谱会以特征性方式发生变化。这种光学扰动表明这些抑制剂(可能还有底物)的结合发生在金属位点或其附近。通过在高pH下与KCN孵育,可以优先去除一个钴(II)离子,这表明这两个离子所处环境不同。

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