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Tryptophan or tyrosine? On the nature of the amino acid radical formed following hydrogen peroxide treatment of cytochrome c oxidase

机译:色氨酸或酪氨酸?过氧化氢处理细胞色素C氧化酶后形成的氨基酸自由基的性质

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摘要

It has been reported that different amino acid radicals are formed following the addition of hydrogen peroxide to cytochrome c oxidase (CcO) from bovine heart or from Paracoccus denitrificans. A broad unresolved signal in the electron paramagnetic resonance (EPR) spectra of bovine CcO has been assigned to a tryptophan radical, probably Trp126 [Rigby et al. Biochemistry 2000, 39, 5921–5928]. In the P. denitrificans enzyme, a similarly broad signal but with a well-resolved hyperfine structure was shown to originate from a tyrosyl radical and was tentatively assigned to the active site Tyr280 [MacMillan et al. Biochemistry 1999, 38, 9179–9184]. We confirm that the EPR signal from P. denitrificans CcO can be simulated using spectral parameters typical for known Tyr radicals in other systems. However, the rotational conformation of the phenolic ring of Tyr280 is inconsistent with our simulation. Instead, the simulation parameters we used correspond to the rotational conformation of ring that matches very accurately the conformation found in Tyr167, a residue that is close enough (~10 A) to the binuclear centre to readily donate an electron. The broad unresolved EPR signal in the bovine oxidase has been thought previously to be inconsistent with a tyrosyl radical. However, we have simulated a hypothetical EPR spectrum arising from a Tyr129 radical (the equivalent of Tyr167 in P. denitrificans CcO) and showed that it is similar to the observed broad signal. The possibility exists, therefore, that the homological tyrosine amino acid (Tyr167/Tyr129) is responsible for the EPR spectrum in both the Paraccoccus and the bovine enzyme. This correspondence between the two enzymes at least allows the possibility that this radical may have functional importance.
机译:据报道,在将过氧化氢添加到来自牛心脏或反硝化副球菌的细胞色素C氧化酶(CcO)中之后,形成了不同的氨基酸基团。牛CcO的电子顺磁共振(EPR)光谱中有一个宽广的未分辨信号已分配给色氨酸基团,可能是Trp126 [Rigby等。生物化学2000,39,5921-5928]。在P. denitrificans酶中,类似的宽信号但具有良好解析的超精细结构被证明源自酪氨酰自由基,并被暂时分配给了Tyr280活性位点[MacMillan等。生物化学1999,38,9179–9184]。我们确认可以使用典型的其他系统中已知的Tyr自由基的光谱参数来模拟来自反硝化疟原虫CcO的EPR信号。然而,Tyr280酚环的旋转构象与我们的模拟不一致。取而代之的是,我们使用的模拟参数对应于非常精确地匹配Tyr167中发现的构象的环的旋转构象,Tyr167是一种与双核中心足够近(〜10 A)的残基,可以很容易地提供电子。以前已经认为牛氧化酶中广泛的未解析的EPR信号与酪氨酰自由基不一致。但是,我们已经模拟了由Tyr129自由基(相当于反硝化杆菌CcO中的Tyr167)产生的假设EPR谱,并表明它与观察到的宽信号相似。因此,可能存在同源酪氨酸氨基酸(Tyr167 / Tyr129)引起副球菌和牛酶EPR谱的变化。两种酶之间的这种对应关系至少允许该自由基具有功能重要性的可能性。

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