首页> 外文期刊>Journal of the American Chemical Society >Solution Structure of the 128 kDa Enzyme I Dimer from Escherichia coli and Its 146 kDa Complex with HPr Using Residual Dipolar Couplings and Small- and Wide-Angle X-ray Scattering
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Solution Structure of the 128 kDa Enzyme I Dimer from Escherichia coli and Its 146 kDa Complex with HPr Using Residual Dipolar Couplings and Small- and Wide-Angle X-ray Scattering

机译:残留偶极偶合和小角度和广角X射线散射法测定的大肠杆菌128 kDa酶I二聚体及其与HPr的146 kDa复合物的溶液结构

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摘要

The solution structures of free Enzyme I (EI, 128 kDa, 575 × 2 residues), the first enzyme in the bacterial phosphotransferase system, and its complex with HPr (146 kDa) have been solved using novel methodology that makes use of prior structural knowledge (namely, the structures of the dimeric EIC domain and the isolated EIN domain both free and complexed to HPr), combined with residual dipolar coupling (RDC), small- (SAXS) and wide- (WAXS) angle X-ray scattering and small-angle neutron scattering (SANS) data. The calculational strategy employs conjoined rigid body/torsion/Cartesian simulated annealing, and incorporates improvements in calculating and refining against SAXS/WAXS data that take into account complex molecular shapes in the description of the solvent layer resulting in a better representation of the SAXS/WAXS data. The RDC data orient the symmetrically related EIN domains relative to the C2 symmetry axis of the EIC dimer, while translational, shape, and size information is provided by SAXS/WAXS. The resulting structures are independently validated by SANS. Comparison of the structures of the free EI and the EI−HPr complex with that of the crystal structure of a trapped phosphorylated EI intermediate reveals large (70−90°) hinge body rotations of the two subdomains comprising the EIN domain, as well as of the EIN domain relative to the dimeric EIC domain. These large-scale interdomain motions shed light on the structural transitions that accompany the catalytic cycle of EI.
机译:使用新颖的方法,利用现有结构知识,解决了游离酶I(EI,128 kDa,575×2个残基),细菌磷酸转移酶系统中的第一个酶及其与HPr(146 kDa)的复合物的溶液结构。 (即,二聚体EIC域和孤立的EIN域的结构既自由又与HPr络合),并与残留偶极耦合(RDC),小(SAXS)和宽(WAXS)角X射线散射以及小角中子散射(SANS)数据。该计算策略采用了结合的刚体/扭转/笛卡尔模拟退火,并结合了针对SAXS / WAXS数据的计算和精炼方面的改进,这些改进考虑了溶剂层描述中复杂的分子形状,从而更好地表示了SAXS / WAXS数据。 RDC数据将对称相关的EIN域相对于EIC二聚体的C 2 对称轴定向,而平移,形状和大小信息则由SAXS / WAXS提供。生成的结构由SANS独立验证。游离EI和EI-HPr配合物的结构与捕获的磷酸化EI中间体的晶体结构的结构比较表明,包含EIN域的两个子域以及与之相关的两个子域的铰链体旋转都很大(70-90°)相对于二聚EIC域的EIN域。这些大规模的域间运动阐明了伴随EI催化循环的结构转变。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2010年第37期|p.13026-13045|共20页
  • 作者

    Charles D. Schwieters;

  • 作者单位

    Laboratory of Chemical Physics, Building 5, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, Maryland 20892-0520, Division of Computational Biosciences, Center for Information Technology, National;

  • 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
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  • 入库时间 2022-08-18 00:50:22

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