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首页> 外文期刊>Journal of the American Chemical Society >Site-Specific Internal Motions in GB1 Protein Microcrystals Revealed by 3D ~2H-~(13)C-~(13)C Solid-State NMR Spectroscopy
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Site-Specific Internal Motions in GB1 Protein Microcrystals Revealed by 3D ~2H-~(13)C-~(13)C Solid-State NMR Spectroscopy

机译:3D〜2H-〜(13)C-〜(13)C固态NMR光谱显示GB1蛋白微晶中的特定位置内部运动

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摘要

~2H quadrupolar line shapes deliver rich information about protein dynamics. A newly designed 3D ~2H-~(13)C-~(13)C solid-state NMR magic angle spinning (MAS) experiment is presented and demonstrated on the microcrystal-line β1 immunoglobulin binding domain of protein G (GB1). The implementation of ~2H-~(13)C adiabatic rotor-echo-short-pulse-irradiation cross-polarization (RESPIRATION CP) ensures the accuracy of the extracted line shapes and provides enhanced sensitivity relative to conventional CP methods. The 3D ~2H-~(13)C-~(13)C spectrum reveals ~2H line shapes for 140 resolved aliphatic deuterium sites. Motional-averaged ~2H quadrupolar parameters obtained from the line-shape fitting identify side-chain motions. Restricted side-chain dynamics are observed for a number of polar residues including K13, D22, E27, K31, D36, N37, D46, D47, K50, and E56, which we attribute to the effects of salt bridges and hydrogen bonds. In contrast, we observe significantly enhanced side-chain flexibility for Q2, K4, K10, E15, E19, N35, N40, and E42, due to solvent exposure and low packing density. T11, T16, and T17 side chains exhibit motions with larger amplitudes than other Thr residues due to solvent interactions. The side chains of L5, VS4, and V29 are highly rigid because they are packed in the core of the protein. High correlations were demonstrated between GB1 side-chain dynamics and its biological function. Large-amplitude side-chain motions are observed for regions contacting and interacting with immunoglobulin G (IgG). In contrast, rigid side chains are primarily found for residues in the structural core of the protein that are absent from protein binding and interactions.
机译:约2H的四极线形可提供有关蛋白质动力学的丰富信息。提出了一种新设计的3D〜2H-〜(13)C-〜(13)C固态NMR幻角旋转(MAS)实验,并在蛋白G(GB1)的微晶线β1免疫球蛋白结合域上进行了证明。 〜2H-〜(13)C绝热转子-回声-短脉冲-辐照交叉极化(RESPIRATION CP)的实施确保了提取线形的准确性,并且相对于常规CP方法提供了更高的灵敏度。 3D〜2H-〜(13)C-〜(13)C光谱揭示了140个解析的脂肪族氘位的〜2H线形。从线形拟合获得的运动平均〜2H四极参数确定了侧链运动。观察到许多极性残基包括K13,D22,E27,K31,D36,N37,D46,D47,K50和E56的受限侧链动力学,我们将其归因于盐桥和氢键的作用。相反,由于溶剂暴露和低堆积密度,我们观察到Q2,K4,K10,E15,E19,N35,N40和E42的侧链柔性显着增强。由于溶剂的相互作用,T11,T16和T17侧链的运动幅度大于其他Thr残基。 L5,VS4和V29的侧链具有很高的刚性,因为它们堆积在蛋白质的核心中。已证明GB1侧链动力学与其生物学功能之间存在高度相关性。对于与免疫球蛋白G(IgG)接触和相互作用的区域,观察到大幅度的侧链运动。相反,主要在蛋白质结构核心中不存在蛋白质结合和相互作用的残基中发现刚性侧链。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2016年第12期|4105-4119|共15页
  • 作者

    Xiangyan Shi; Chad M. Rienstra;

  • 作者单位

    Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, United States;

    Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, Illinois 61801, United States;

  • 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);
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  • 正文语种 eng
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