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甲酰四氢叶酸合成酶-锰离子复合物的电子顺磁共振和水质子弛豫率研究。底物参与促进具有催化活性的活性位点的证据。

Electron paramagnetic resonance and water proton relaxation rate studies of formyltetrahydrofolate synthetase-manganous ion complexes. Evidence for involvement of substrates in the promotion of a catalytically competent active site.

作者信息

Buttlaire D H, Reed G H, Himes R

出版信息

J Biol Chem. 1975 Jan 10;250(1):261-70.

PMID:166989
Abstract

Conformational properties of the active site of formyltetrahydrofolate synthetase from Clostridium cylindrosorum have been examined by EPR spectroscopy and by solvent proton relaxation rate (PPR) studies of manganous complexes with the enzyme. Ternary enzyme-Mn-nucleotide complexes give EPR spectra which are very similar to those for the binary Mn-nucleotide complexes. However, upon addition of tetrahydrofolate to form the quaternary complexes, enzyme-MnADP-tetrahydrofolate and enzyme MnATP-tetrahydrofolate the EPR line shapes are changed substantially. Spectra for the quaternary complexes exhibit narrow line widths, and the splitting patterns are characteristic of a slightly asymmetric electronic environment for the bound Mn(II). Addition of formate to the ADP quatenary complex induces a further significant narrowing of the EPR line widths, although in the absence of tetrahydrofolate, formate does not influence the EPR spectrum for the enzyme-MnADP species. Both Pi and nitrate cause changes in the EPR patterns for the higher complexes of the enzyme which involve both ADP and tetrahydololate. However, the Pi effect is not influenced by the presence of formate whereas the characteristic effect of nitrate is potentiated only when formate is present. EPR sectra for the thernary complex with the beta, gamma-methylene analog of ATP App(CH2)p differ significantly from spectra for the binary App(CH)p complex is not influenced by further additions of tetrahydrofolate and of tetrahydorfolate and formate. The failure of spectra for the App(CH)p complex to respond to additions of the other substrates for the reaction is in marked contrast to the behavior found for the natural nucleotide substrates and is tentatively attributed to the lack of a protein-mediated interaction between the nucleotide and tetrahydrofolate binding sites in the analog complex. The frequency dependence of solvent PRR in the presence of the various complexes allows an estimate of the correlation times for electron-nuclear dipolar interaction and thereby the extent of hydration of the bound Mn(II) among the various complexes..

摘要

通过电子顺磁共振光谱(EPR)以及对锰与该酶形成的配合物进行溶剂质子弛豫速率(PPR)研究,考察了柱状梭菌甲酰四氢叶酸合成酶活性位点的构象性质。三元酶 - 锰 - 核苷酸配合物产生的EPR光谱与二元锰 - 核苷酸配合物的光谱非常相似。然而,加入四氢叶酸形成四元配合物,即酶 - MnADP - 四氢叶酸和酶 - MnATP - 四氢叶酸后,EPR谱线形状发生了显著变化。四元配合物的光谱显示出线宽变窄,并且分裂模式是结合的Mn(II)处于略微不对称电子环境的特征。向ADP四元配合物中加入甲酸盐会导致EPR线宽进一步显著变窄,尽管在没有四氢叶酸的情况下,甲酸盐不会影响酶 - MnADP物种的EPR光谱。磷酸根离子(Pi)和硝酸根都能使该酶涉及ADP和四氢叶酸的更高阶配合物的EPR图谱发生变化。然而,Pi的效应不受甲酸盐存在的影响,而硝酸根的特征效应仅在甲酸盐存在时增强。与ATP的β,γ - 亚甲基类似物App(CH2)p形成的三元配合物的EPR光谱与二元App(CH)p配合物的光谱有显著差异,二元App(CH)p配合物不受进一步添加四氢叶酸和甲酸盐的影响。App(CH)p配合物的光谱对反应的其他底物添加没有响应,这与天然核苷酸底物的行为形成了鲜明对比,并初步归因于类似物配合物中核苷酸和四氢叶酸结合位点之间缺乏蛋白质介导的相互作用。在各种配合物存在下溶剂PRR的频率依赖性使得能够估计电子 - 核偶极相互作用的相关时间,从而估计各种配合物中结合的Mn(II)的水合程度。

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