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Structural and dynamic characterization of the urea denatured state of the immunoglobulin binding domain of streptococcal protein G by multidimensional heteronuclear NMR spectroscopy.

机译:链球菌蛋白G的免疫球蛋白结合域的尿素变性状态的结构和动态表征通过多维异核NMR光谱法。

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摘要

The structure and dynamics of the urea-denatured B1 immunoglobulin binding domain of streptococcal protein G (GB1) has been investigated by multidimensional heteronuclear NMR spectroscopy. Complete 1H, 15N, and 13C assignments are obtained by means of sequential through-bond correlations. The nuclear Overhauser enhancement, chemical shift, and 3JHN alpha coupling constant data provide no evidence for the existence of any significant population of residual native or nonnative ordered structure. 15N relaxation measurements at 500 and 600 MHz, however, provide evidence for conformationally restricted motions in three regions of the polypeptide that correspond to the second beta-hairpin, the N-terminus of the alpha-helix, and the middle of the alpha-helix in the native protein. The time scale of these motions is longer than the apparent overall correlation time (approximately 3 ns) and could range from about 6 ns in the case of one model to between 4 microseconds and 2 ms in another; it is not possible to distinguish between these two cases with certainty because the dynamics are highly complex and hence the analysis of the time scale of this slower motion is highly model dependent. It is suggested that these three regions may correspond to nucleation sites for the folding of the GB1 domain. With the exception of the N- and C-termini, where end effects predominate, the amplitude of the subnanosecond motions, on the other hand, are fairly uniform and model independent, with an overall order parameter S2 ranging from 0.4 to 0.5.
机译:链球菌蛋白G(GB1)的尿素变性B1免疫球蛋白结合域的结构和动力学已通过多维异核NMR光谱进行了研究。通过连续的键合相关性可以获得完整的1H,15N和13C分配。核Overhauser增强,化学位移和3JHNα耦合常数数据没有提供证据表明存在任何大量的残留天然或非天然有序结构。然而,在500和600 MHz处进行15N弛豫测量可为多肽的三个区域中的构象受限运动提供证据,该区域对应于第二个β-发夹,α螺旋的N末端和α螺旋的中间在天然蛋白质中。这些运动的时间尺度比表观的整体相关时间更长(约3 ns),在一个模型的情况下可能在6 ns左右,而在另一个模型的情况下可能在4微秒到2 ms之间。由于动力学非常复杂,因此无法确定地区分这两种情况,因此对这种慢动作的时间尺度的分析高度依赖于模型。建议这三个区域可以对应于GB1结构域折叠的成核位点。另一方面,除了末端作用占主导的N和C末端外,亚纳秒级运动的幅度相当均匀且与模型无关,总阶数参数S2为0.4到0.5。

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