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Protein-coenzyme interactions in adenosylcobalamin-dependent glutamate mutase.

机译:腺苷钴胺素依赖性谷氨酸突变酶中的蛋白质-辅酶相互作用。

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摘要

Glutamate mutase catalyses an unusual isomerization involving free-radical intermediates that are generated by homolysis of the cobalt-carbon bond of the coenzyme adenosylcobalamin (coenzyme B(12)). A variety of techniques have been used to examine the interaction between the protein and adenosylcobalamin, and between the protein and the products of coenzyme homolysis, cob(II)alamin and 5'-deoxyadenosine. These include equilibrium gel filtration, isothermal titration calorimetry, and resonance Raman, UV-visible and EPR spectroscopies. The thermodynamics of adenosylcobalamin binding to the protein have been examined and appear to be entirely entropy-driven, with DeltaS=109 J.mol(-1).K(-1). The cobalt-carbon bond stretching frequency is unchanged upon coenzyme binding to the protein, arguing against a ground-state destabilization of the cobalt-carbon bond of adenosylcobalamin by the protein. However, reconstitution of the enzyme with cob(II)alamin and 5'-deoxyadenosine, the two stable intermediates formed subsequent to homolysis, results in the blue-shifting of two of the bands comprising the UV-visible spectrum of the corrin ring. The most plausible interpretation of this result is that an interaction between the protein, 5'-deoxyadenosine and cob(II)alamin introduces a distortion into the ring corrin that perturbs its electronic properties.
机译:谷氨酸突变酶催化一种不寻常的异构化反应,该反应涉及自由基中间体,该中间体是通过辅酶腺苷钴胺素(辅酶B(12))的钴碳键均质化而生成的。已经使用多种技术来检查蛋白质和腺苷钴胺素之间以及蛋白质与辅酶均解产物,cob(II)丙氨酸和5'-脱氧腺苷之间的相互作用。这些方法包括平衡凝胶过滤,等温滴定量热法和共振拉曼光谱,紫外可见光谱和EPR光谱。腺苷钴胺素与蛋白质结合的热力学已经过检查,似乎完全由熵驱动,DeltaS = 109 J.mol(-1).K(-1)。辅酶与蛋白质结合后,钴-碳键的伸展频率不变,这是由于蛋白质使腺苷钴胺素的钴-碳键基态不稳定而引起的。然而,用cob(II)丙氨酸和5'-脱氧腺苷(均质后形成的两个稳定的中间体)重建酶,导致包含柯林环的UV可见光谱的两个条带发生蓝移。此结果最合理的解释是,蛋白质,5'-脱氧腺苷与cob(II)阿拉明蛋白之间的相互作用将一种失真引入环柯林,从而扰乱其电子性质。

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