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蛋白质中骨架顺序的氘核自旋探针:氘代α碳原子位点的 2H NMR 弛豫研究。

Deuterium spin probes of backbone order in proteins: 2H NMR relaxation study of deuterated carbon alpha sites.

机构信息

Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, USA.

出版信息

J Am Chem Soc. 2009 Nov 4;131(43):15853-65. doi: 10.1021/ja9063958.

Abstract

(2)H spin relaxation NMR experiments to study the dynamics of deuterated backbone alpha-positions, D(alpha), are developed. To date, solution-state (2)H relaxation measurements in proteins have been confined to side-chain deuterons-primarily (13)CH(2)D or (13)CHD(2) methyl groups. It is shown that quantification of (2)H relaxation rates at D(alpha) backbone positions and the derivation of associated order parameters of C(alpha)-D(alpha) bond vector motions in small [U-(15)N,(13)C,(2)H]-labeled proteins is feasible with reasonable accuracy. The utility of the developed methodology is demonstrated on a pair of proteins-ubiquitin (8.5 kDa) at 10, 27, and 40 degrees C, and a variant of GB1 (6.5 kDa) at 22 degrees C. In both proteins, the D(alpha)-derived parameters of the global rotational diffusion tensor are in good agreement with those obtained from (15)N relaxation rates. Semiquantitative solution-state NMR measurements yield an average value of the quadrupolar coupling constant, QCC, for D(alpha) sites in proteins equal to 174 kHz. Using a uniform value of QCC for all D(alpha) sites, we show that C(alpha)-D(alpha) bond vectors are motionally distinct from the backbone amide N-H bond vectors, with (2)H-derived squared order parameters of C(alpha)-D(alpha) bond vector motions, S(2)(CalphaDalpha), on average slightly higher than their N-H amides counterparts, S(2)(NH). For ubiquitin, the (2)H-derived backbone mobility compares well with that found in a 1-mus molecular dynamics simulation.

摘要

(2)发展了用于研究氘代主链α位(D(alpha))动力学的 H 自旋弛豫 NMR 实验。迄今为止,蛋白质中溶液态(2)H 弛豫测量仅限于侧链氘原子-主要是(13)CH(2)D 或(13)CHD(2)甲基。结果表明,在小的[U-(15)N,(13)C,(2)H]-标记的蛋白质中,定量测定 D(alpha)主链位置的(2)H 弛豫率以及相关的 C(alpha)-D(alpha)键向量运动的顺序参数是可行的,具有合理的精度。该方法的实用性在一对蛋白质-泛素(8.5 kDa)在 10、27 和 40°C,以及 GB1 的变体(6.5 kDa)在 22°C 下得到了证明。在这两种蛋白质中,全局旋转扩散张量的 D(alpha)衍生参数与通过(15)N 弛豫率获得的参数非常吻合。半定量溶液态 NMR 测量得出蛋白质中 D(alpha)位点的四极耦合常数 QCC 的平均值等于 174 kHz。使用所有 D(alpha)位点的统一 QCC 值,我们表明 C(alpha)-D(alpha)键向量与主链酰胺 N-H 键向量在运动上是不同的,C(alpha)-D(alpha)键向量运动的(2)H 衍生平方顺序参数 S(2)(CalphaDalpha)平均略高于其 N-H 酰胺对应物 S(2)(NH)。对于泛素,(2)H 衍生的骨架流动性与 1-mus 分子动力学模拟中发现的流动性相当。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c866/2770885/96234ba4b992/nihms-152242-f0001.jpg

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