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Evidence of the Reduced Abundance of Proline cis Conformation in Protein Poly Proline Tracts

机译:蛋白质脯氨酸脯氨酸脯氨酸顺式构象丰度降低的证据

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Proline is found in a cis conformation in proteins more often than other proteinogenic amino acids, where it influences structure and modulates function, being the focus of several high-resolution structural studies. However, until now, technical and methodological limitations have hampered the site-specific investigation of the conformational preferences of prolines present in poly proline (poly-P) homorepeats in their protein context. Here, we apply site-specific isotopic labeling to obtain high-resolution NMR data on the cis/trans equilibrium of prolines within the poly-P repeats of huntingtin exon 1, the causative agent of Huntington's disease. Screening prolines in different positions in long (poly-P_(11)) and short (poly- P_3) poly-P tracts, we found that, while the first proline of poly-P tracts adopts similar levels of cis conformation as isolated prolines, a length-dependent reduced abundance of cis conformers is observed for terminal prolines. Interestingly, the cis isomer could not be detected in inner prolines, in line with percentages derived from a large database of proline-centered tripeptides extracted from crystallographic structures. These results suggest a strong cooperative effect within poly-Ps that enhances their stiffness by diminishing the stability of the cis conformation. This rigidity is key to rationalizing the protection toward aggregation that the poly-P tract confers to huntingtin. Furthermore, the study provides new avenues to probe the structural properties of poly-P tracts in protein design as scaffolds or nanoscale rulers.
机译:脯氨酸在蛋白质中的顺式构象比其他蛋白质氨基酸更常见,在蛋白质中它影响结构并调节功能,这是一些高分辨率结构研究的重点。然而,直到现在,技术和方法上的限制还阻碍了对在蛋白质背景下存在于聚脯氨酸(poly-P)同系重复序列中的脯氨酸的构象偏好的定点研究。在这里,我们应用位点特异性同位素标记来获得亨廷顿氏病致病因子亨廷顿外显子1的poly-P重复序列中脯氨酸的顺/反平衡的高分辨率NMR数据。在长(poly-P_(11))和短(poly-P_3)poly-P片段的不同位置筛选脯氨酸,我们发现,虽然poly-P片段的第一个脯氨酸采用与分离的脯氨酸相似的顺式构象水平,对于末端脯氨酸,观察到长度依赖性的顺式构象异构体减少。有趣的是,顺式异构体在内部脯氨酸中无法检测到,这与从晶体结构中提取的大量以脯氨酸为中心的三肽数据库的百分比一致。这些结果表明poly-Ps内有很强的协同作用,可以通过减少顺式构象的稳定性来增强其刚度。这种刚性是合理化对聚P链赋予亨廷顿蛋白的聚集保护的关键。此外,该研究提供了新途径来探究蛋白质设计中作为支架或纳米级标尺的多聚P结构的结构特性。

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