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通过多场谱密度映射得到的埃格林C中NH键的频谱。

Frequency spectrum of NH bonds in eglin c from spectral density mapping at multiple fields.

作者信息

Peng J W, Wagner G

机构信息

Vertex Pharmaceuticals, Inc., Cambridge, Massachusetts 02139, USA.

出版信息

Biochemistry. 1995 Dec 26;34(51):16733-52. doi: 10.1021/bi00051a023.

Abstract

The internal mobility of the protein eglin c is characterized with spectral density functions of the NH vectors obtained from heteronuclear NMR relaxation at multiple field strengths (7.04, 11.74, and 14.1 T). The spectral density functions, J(omega), describe the frequency spectrum of the rotational fluctuations of the XH bond vectors (15N-1H and 13C-1H). The spectral density-mapping approach [Peng, J. W., & Wagner, G. (1992a) J. Magn. Reson. 98, 308-332; Peng, J. W., & Wagner, G (1992b) Biochemistry 31, 8571-8586] permits the direct evaluation of J(omega) at the five frequencies 0, omega N, magnitude of omega H - magnitude of omega X, omega H, and magnitude of omega H + magnitude of omega X. The 15N-1H relaxation measurements from three field strengths on 15N-enriched eglin c resulted in 18 relaxation rate constants per NH bond and 13 unique evaluations of each NH spectral density function. Dynamic heterogeneity along the protein backbone is manifested most clearly in spectral density values at lower frequencies (< 100 MHz). The effective value of J(0), J(eff)(0), is the most sensitive probe of dynamics as it is affected by both rapid internal motions and slow chemical exchange processes. Low J(eff)(0) and J(omega N) values are correlated with fast amide proton-deuteron exchange rates; the converse, however, is not observed. Anomalies in J(omega H) and J(magnitude of omega H +/- magnitude of omega N) observed in the first applications of the spectral-mapping approach are now attributable to the high sensitivity of these values to small errors in the rate constants. These anomalies can be reduced by the use of a reduced spectral-mapping procedure. The use of multiple field strengths allows the identification of slow exchange processes manifested as an increase of J(eff)(0) with spectrometer field strength.

摘要

通过在多个场强(7.04、11.74和14.1 T)下进行异核NMR弛豫获得的NH向量的谱密度函数,对蛋白质依格林C的内部流动性进行了表征。谱密度函数J(ω)描述了XH键向量(15N-1H和13C-1H)旋转涨落的频谱。谱密度映射方法[Peng, J. W., & Wagner, G. (1992a) J. Magn. Reson. 98, 308 - 332; Peng, J. W., & Wagner, G (1992b) Biochemistry 31, 8571 - 8586]允许在0、ωN、ωH - ωX的大小、ωH以及ωH + ωX的大小这五个频率下直接评估J(ω)。对富含15N的依格林C在三个场强下进行的15N-1H弛豫测量,每个NH键产生了18个弛豫速率常数,每个NH谱密度函数有13个独特的评估值。沿着蛋白质主链的动态异质性在较低频率(<100 MHz)的谱密度值中表现得最为明显。J(0)的有效值J(eff)(0)是动力学最敏感的探针,因为它受到快速内部运动和缓慢化学交换过程的影响。低J(eff)(0)和J(ωN)值与快速的酰胺质子 - 氘交换速率相关;然而,反之则未观察到。在谱映射方法首次应用中观察到的J(ωH)和J(ωH ± ωN的大小)的异常现象,现在归因于这些值对速率常数中小误差的高敏感性。通过使用简化的谱映射程序可以减少这些异常现象。使用多个场强可以识别表现为J(eff)(0)随光谱仪场强增加的缓慢交换过程。

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