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二聚体亚氯酸盐歧化酶中催化精氨酸动力学对亚硝酸盐和亚氯酸盐结合的影响。

Impact of the dynamics of the catalytic arginine on nitrite and chlorite binding by dimeric chlorite dismutase.

机构信息

BIMEF Laboratory, Department of Chemistry, University of Antwerp, Belgium.

Department of Chemistry, Institute of Biochemistry, University of Natural Resources and Life Sciences, Vienna, Muthgasse 18, A-1190 Vienna, Austria.

出版信息

J Inorg Biochem. 2022 Feb;227:111689. doi: 10.1016/j.jinorgbio.2021.111689. Epub 2021 Dec 10.

Abstract

Chlorite dismutases (Clds) are heme b containing oxidoreductases able to decompose chlorite to chloride and molecular oxygen. This work analyses the impact of the distal, flexible and catalytic arginine on the binding of anionic angulate ligands like nitrite and the substrate chlorite. Dimeric Cld from Cyanothece sp. PCC7425 was used as a model enzyme. We have investigated wild-type CCld having the distal catalytic R127 hydrogen-bonded to glutamine Q74 and variants with R127 (i) being arrested in a salt-bridge with a glutamate (Q74E), (ii) being fully flexible (Q74V) or (iii) substituted by either alanine (R127A) or lysine (R127K). We present the electronic and spectral signatures of the high-spin ferric proteins and the corresponding low-spin nitrite complexes elucidated by UV-visible, circular dichroism and electron paramagnetic resonance spectroscopies. Furthermore, we demonstrate the impact of the dynamics of R127 on the thermal stability of the respective nitrite adducts and present the X-ray crystal structures of the nitrite complexes of wild-type CCld and the variants Q74V, Q74E and R127A. In addition, the molecular dynamics (MD) and the binding modi of nitrite and chlorite to the ferric wild-type enzyme and the mutant proteins and the interaction of the oxoanions with R127 have been analysed by MD simulations. The findings are discussed with respect to the role(s) of R127 in ligand and chlorite binding and substrate degradation.

摘要

绿泥石双加氧酶(Clds)是一类含有血红素 b 的氧化还原酶,能够将亚氯酸盐分解为氯离子和分子氧。本工作分析了远端柔性催化精氨酸在结合阴离子角状配体(如亚硝酸盐和底物亚氯酸盐)方面的作用。使用来自 Cyanothece sp. PCC7425 的二聚体 Cld 作为模型酶。我们研究了具有远端催化 R127 与谷氨酰胺 Q74 形成氢键的野生型 CCld 以及具有以下变体的酶:(i)R127 被谷氨酸(Q74E)固定在盐桥中,(ii)完全柔性(Q74V)或(iii)被丙氨酸(R127A)或赖氨酸(R127K)取代。我们通过紫外可见光谱、圆二色性和电子顺磁共振光谱学揭示了高自旋 ferric 蛋白的电子和光谱特征以及相应的低自旋亚硝酸盐络合物。此外,我们还证明了 R127 动力学对相应亚硝酸盐加合物热稳定性的影响,并展示了野生型 CCld 及其变体 Q74V、Q74E 和 R127A 的亚硝酸盐络合物的 X 射线晶体结构。此外,还通过分子动力学(MD)模拟分析了亚硝酸盐和亚氯酸盐与 ferric 野生型酶和突变蛋白的结合模式以及氧阴离子与 R127 的相互作用。讨论了这些发现与 R127 在配体和亚氯酸盐结合以及底物降解中的作用。

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