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Real-time NMR studies on a transient folding intermediate of barstar.

机译:barstar瞬态折叠中间体的实时NMR研究。

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摘要

The refolding of barstar, the intracellular inhibitor of barnase, is dominated by the slow formation of a cis peptidyl prolyl bond in the native protein. The triple mutant C40/82A P27A in which two cysteine residues and one trans proline were replaced by alanine was used as model system to investigate the kinetics and structural consequences of the trans/cis interconversion of Pro48. One- and two-dimensional real-time NMR spectroscopy was used to follow the trans/cis interconversion after folding was initiated by rapid dilution of the urea denatured protein. Series of 1H, 15N HSQC spectra acquired with and without the addition of peptidyl prolyl isomerase unambiguously revealed the accumulation of a transient trans-Pro48 intermediate within the dead time of the experiment. Subtle chemical shift differences between the native state and the intermediate spectra indicate that the intermediate is predominantly native-like with a local rearrangement in the Pro48 loop and in the beta-sheet region including residues Tyr47, Ala82, Thr85, and Val50.
机译:barstar的胞内抑制剂barstar的重折叠主要由天然蛋白质中顺式肽基脯氨酰键的缓慢形成决定。使用三重突变体C40 / 82A P27A(其中两个半胱氨酸残基和一个反式脯氨酸被丙氨酸替代)作为模型系统,研究Pro48反式/顺式相互转化的动力学和结构影响。通过快速稀释尿素变性蛋白引发折叠后,使用一维和二维实时NMR光谱追踪反/顺式相互转换。在添加和不添加肽基脯氨酰异构酶的情况下获得的一系列1H,15N HSQC谱图清楚地表明,在实验的死时间内,瞬态反式Pro-Pro48中间体积累了。原始状态和中间谱之间的细微化学位移差异表明,中间产物主要是天然样,在Pro48环和β-折叠区域(包括Tyr47,Ala82,Thr85和Val50残基)中发生局部重排。

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