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首页> 外文期刊>Proteins: Structure, Function, and Genetics >A preliminary CD and NMR study of the Escherichia coli DNA polymerase III theta subunit.
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A preliminary CD and NMR study of the Escherichia coli DNA polymerase III theta subunit.

机译:初步的CD和NMR研究大肠杆菌DNA聚合酶III theta亚基。

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The theta subunit of DNA polymerase III, the main replicative polymerase of Escherichia coli, has been examined by circular dichroism and by NMR spectroscopy. The polymerase core consists of three subunits: alpha, epsilon, and theta, with alpha possessing the polymerase activity, epsilon functioning as a proofreading exonuclease, and theta, a small subunit of 8.9 kD, of undetermined function. The theta subunit has been expressed in E. coli, and a CD analysis of theta indicates the presence of a significant amount of secondary structure: approximately 52% alpha helix, 9% beta sheet, 21% turns, and 18% random coil. However, at higher concentrations, theta yields a poorly-resolved 1D proton NMR spectrum in which both the amide protons and the methyl protons show poor chemical shift dispersion. Subsequent 1H-15N HSQC analysis of uniformly-15N-labeled theta supports the conclusion that approximately half of the protein is reasonably well-structured. Another quarter of the protein, probably including some of the N-terminal region, is highly mobile, exhibiting a chemical shift pattern indicative of random coil structure. The remaining amide resonances exhibit significant broadening, indicative of intermolecular and/or intramolecular exchange processes. Improved chemical shift dispersion and greater uniformity of resonance intensities in the 1H-15N HSQC spectra resulted when [U-15N]-theta was examined in the presence of epsilon186--the N-terminal domain of the epsilon-subunit. Further work is currently in progress to define the solution structure of theta and the theta-epsilon186 complex.
机译:DNA聚合酶III(大肠杆菌的主要复制性聚合酶)的theta亚基已通过圆二色性和NMR光谱法进行了检查。聚合酶核心由三个亚基组成:α,ε和theta,α具有聚合酶活性,ε用作校对核酸外切酶,theta是8.9 kD的小亚基,功能不确定。 θ亚基已在大肠杆菌中表达,对θ的CD分析表明存在大量二级结构:约52%的α螺旋,9%的β折叠,21%的匝数和18%的无规卷曲。但是,在较高的浓度下,θ产生的分辨较差的1D质子NMR光谱,其中酰胺质子和甲基质子均显示出较差的化学位移分散性。随后对15N均一标记的theta进行1H-15N HSQC分析可得出以下结论:大约一半的蛋白质结构合理。另一半的蛋白质(可能包括一些N端区域)具有很高的流动性,表现出化学位移模式,指示无规卷曲结构。剩余的酰胺共振表现出显着的拓宽,表明分子间和/或分子内交换过程。当在ε-亚基的N-末端结构域epsilon186存在下检测[U-15N]-θ时,在1H-15N HSQC光谱中改善了化学位移分散性,并增强了共振强度的一致性。当前正在进行进一步的工作以定义θ和θ-ε186复合物的溶液结构。

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