首页> 外文期刊>Journal of peptide science: An official publication of the European Peptide Society >Switching from the unfolded to the folded state of the helix-loop-helix domain of the Id proteins based on the O-acyl isopeptide method
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Switching from the unfolded to the folded state of the helix-loop-helix domain of the Id proteins based on the O-acyl isopeptide method

机译:基于O-酰基异肽方法从Id蛋白的螺旋-环-螺旋结构域的未折叠状态切换到折叠状态

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摘要

The inhibitors of DNA binding and cell differentiation Id 1-4 are helix-loop-helix (HLH) proteins that negatively regulate DNA transcription by forming inactive dimers with ubiquitous and tissue-specific bHLH proteins, including E47 and MyoD, respectively. Their highly conserved HLH domains are essential for heterodimerization, but can also self-associate to highly stable, alpha-helix-rich structures at low micromolar peptide concentrations. Here, we show that the introduction of an O-acyl isodipeptide unit involving the putative N-cap serine residue of the C-terminal helix completely abrogates the propensity of the Id HLH analogue for any secondary and tertiary structure, resulting in a random coil, as shown by CD measurements in nonbuffered aqueous solutions. However, the HLH fold reappears as soon as an O -> N intramolecular acyl migration, which occurs spontaneously under physiological conditions, restores the native N-cap serine residue. These results show that changes addressing the N-terminus of the C-terminal helix can dramatically influence the HLH structure, and suggest that local interactions at the junction between the loop and the C-terminal helix might be crucial during the HLH folding process. Furthermore, the present study contributes to the evaluation of the O-acyl isodipeptide unit as a powerful tool to introduce a conformational switch into peptides. Copyright (C) 2008 European Peptide Society and John Wiley & Sons, Ltd.
机译:DNA结合和细胞分化Id 1-4的抑制剂是螺旋-环-螺旋(HLH)蛋白,它们通过分别与普遍存在的和组织特异性的bHLH蛋白质(包括E47和MyoD)形成非活性二聚体来负调控DNA转录。它们的高度保守的HLH域对于异源二聚化至关重要,但在低微摩尔肽浓度下,也可以与高度稳定的富含α-螺旋的结构自相关。在这里,我们表明,涉及C末端螺旋的N帽丝氨酸残基的O-酰基异二肽单元的引入,完全消除了Id HLH类似物对任何二级和三级结构的倾向,从而产生了无规卷曲,如在非缓冲水溶液中的CD测量所示。但是,在生理条件下自发发生的O→N分子内酰基迁移会恢复天然的N-帽丝氨酸残基,因此HLH折叠会重新出现。这些结果表明,针对C末端螺旋的N末端的变化会极大地影响HLH结构,并表明在HLH折叠过程中,环与C末端螺旋之间的连接处的局部相互作用可能至关重要。此外,本研究有助于评估O-酰基异二肽单元,作为将构象转换引入肽中的有力工具。版权所有(C)2008欧洲肽协会和John Wiley&Sons,Ltd.

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