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Spectroscopic and Computational Studies of the ATP:Corrinoid Adenosyltransferase (CobA) from Salmonella enterica:Insights into the Mechanism of Adenosylcobalamin Biosynthesis

机译:肠沙门氏菌ATP:类Corrinoid腺苷转移酶(CobA)的光谱和计算研究:对腺苷钴胺素生物合成机理的见解

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摘要

CobA from Salmonella enterica is a member of an enzymatic system responsible for the de novo biosynthesis of adenosylcobalamin (AdoCbl),catalyzing the formation of the essential Co-C bond by transferring the adenosyl group from a molecule of ATP to a transient Co~(1+) corrinoid species generated in the enzyme active site.A particularly fascinating aspect of this reaction is that the flavodoxin in vivo reducing agent that serves as the electron donor to CobA possesses a reduction potential that is considerably more positive than that of the Co~(2+/1+) couple of the corrinoid substrate.To explore how CobA may overcome this challenge,we have employed electronic absorption,magnetic circular dichroism,and electron paramagnetic resonance (EPR) spectroscopies to probe the interaction between Co~(3+)- and Co~(2+)corrinoids and the enzyme active site.Our data reveal that while Co~(3+)corrinoids interact only weakly with CobA,Co~(2+)corrinoids undergo partial conversion to a new paramagnetic species that can be obtained in nearly quantitative yield when CobA is preincubated with the co-substrate ATP.This "activated" species is characterized by a distinct set of ligand field transitions in the near-IR spectral region and EPR parameters that are unprecedented for Co~(2+)corrinoids.Analysis of these data on the basis of qualitative spectral correlations and density functional theory computations reveals that this unique Co~(2+)corrinoid species possesses an essentially square-planar Co~(2+) center that lacks any significant axial bonding interactions.Possible implications of these findings for the mechanism of Co~(2+) - Co~(1+) reduction employed by CobA and Co-C bond-forming enzymes in general are explored.
机译:沙门氏菌中的CobA是负责从头生物合成腺苷钴胺素(AdoCbl)的酶系统的成员,它通过将腺苷基团从ATP分子转移到瞬时Co〜(1)来催化基本的Co-C键形成。 +)在酶活性位点产生的类corrinoid物种。该反应的一个特别令人着迷的方面是,作为CobA的电子供体的黄酮毒素体内还原剂的还原电位比Co〜( 2 + / 1 +)偶联的类皮质醇底物。为探讨CobA如何克服这一挑战,我们采用电子吸收,磁性圆二色性和电子顺磁共振(EPR)光谱法研究Co〜(3+)之间的相互作用-和Co〜(2+)皮质激素和酶活性位点。我们的数据显示,虽然Co〜(3+)皮质激素与CobA的相互作用很弱,但Co〜(2+)皮质激素部分转化为新的顺磁性物种当CobA与共底物ATP预温育时,几乎可以定量获得cies。这种“激活的”物种的特点是在近红外光谱区域有一系列独特的配体场跃迁和EPR参数,这对于Co 〜(2+)corrinoids。在定性光谱相关性和密度泛函理论计算的基础上对这些数据的分析表明,这种独特的Co〜(2+)corrinoid物种具有一个基本为平面的Co〜(2+)中心,而该中心缺乏探究了这些发现对通常由CobA和Co-C键形成酶采用的Co〜(2+)-Co〜(1+)还原机理的潜在意义。

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  • 来源
    《Journal of the American Chemical Society》 |2005年第24期|p.8710-8719|共10页
  • 作者单位

    Contribution from the Departments of Chemistry and Bacteriology,University of Wisconsin-Madison,Madison,Wisconsin 53706;

    Contribution from the Departments of Chemistry and Bacteriology,University of Wisconsin-Madison,Madison,Wisconsin 53706;

    Contribution from the Departments of Chemistry and Bacteriology,University of Wisconsin-Madison,Madison,Wisconsin 53706;

    Contribution from the Departments of Chemistry and Bacteriology,University of Wisconsin-Madison,Madison,Wisconsin 53706;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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