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芳香族氨基酸的扰动与核苷酸还原酶中铁簇的组装有关。

Perturbations of aromatic amino acids are associated with iron cluster assembly in ribonucleotide reductase.

机构信息

Department of Chemistry and Biochemistry, Georgia Institute of Technology, Atlanta, Georgia 30332, USA.

出版信息

J Am Chem Soc. 2011 May 11;133(18):6978-88. doi: 10.1021/ja107918g. Epub 2011 Apr 12.

Abstract

The β2 subunit of class Ia ribonucleotide reductases (RNR) contains an antiferromagnetically coupled μ-oxo bridged diiron cluster and a tyrosyl radical (Y122•). In this study, an ultraviolet resonance Raman (UVRR) difference technique describes the structural changes induced by the assembly of the iron cluster and by the reduction of the tyrosyl radical. Spectral contributions from aromatic amino acids are observed through UV resonance enhancement at 229 nm. Vibrational bands are assigned by comparison to histidine, phenylalanine, tyrosine, tryptophan, and 3-methylindole model compound data and by isotopic labeling of histidine in the β2 subunit. Reduction of the tyrosyl radical reveals Y122• Raman bands at 1499 and 1556 cm(-1) and Y122 Raman bands at 1170, 1199, and 1608 cm(-1). There is little perturbation of other aromatic amino acids when Y122• is reduced. Assembly of the iron cluster is shown to be accompanied by deprotonation of histidine. A p(2)H titration study supports the assignment of an elevated pK for the histidine. In addition, structural perturbations of tyrosine and tryptophan are detected. For tryptophan, comparison to model compound data suggests an increase in hydrogen bonding and a change in conformation when the iron cluster is removed. pH and (2)H(2)O studies imply that the perturbed tryptophan is in a low dielectric environment that is close to the metal center and protected from solvent exchange. Tyrosine contributions are attributed to a conformational or hydrogen-bonding change. In summary, our work shows that electrostatic and conformational perturbations of aromatic amino acids are associated with metal cluster assembly in RNR. These conformational changes may contribute to the allosteric effects, which regulate metal binding.

摘要

I 类核糖核苷酸还原酶(RNR)的β2 亚基含有一个反铁磁耦合的μ-氧桥联双核铁簇和一个酪氨酸自由基(Y122•)。在这项研究中,一种紫外共振拉曼(UVRR)差谱技术描述了铁簇组装和酪氨酸自由基还原引起的结构变化。通过在 229nm 处的紫外共振增强,观察到芳香族氨基酸的光谱贡献。通过与组氨酸、苯丙氨酸、酪氨酸、色氨酸和 3-甲基吲哚模型化合物数据的比较以及β2 亚基中组氨酸的同位素标记,对振动带进行了归属。酪氨酸自由基的还原揭示了 Y122•的 Raman 带在 1499 和 1556cm-1处,Y122的 Raman 带在 1170、1199 和 1608cm-1处。当 Y122•被还原时,其他芳香族氨基酸几乎没有受到干扰。铁簇的组装被证明伴随着组氨酸的去质子化。p(2)H 滴定研究支持组氨酸的升高 pK 值的归属。此外,还检测到酪氨酸和色氨酸的结构扰动。对于色氨酸,与模型化合物数据的比较表明,当铁簇被去除时,氢键增加并且构象发生变化。pH 和(2)H2O 研究表明,受扰的色氨酸处于靠近金属中心且免受溶剂交换的低介电环境中。酪氨酸的贡献归因于构象或氢键的变化。总之,我们的工作表明,芳香族氨基酸的静电和构象扰动与 RNR 中的金属簇组装有关。这些构象变化可能有助于调节金属结合的变构效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36d4/3164833/c817076e95b9/nihms288588f1.jpg

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