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首页> 外文期刊>Journal of Molecular Biology >N-terminal segments modulate the α-helical propensities of the intrinsically disordered basic regions of bZIP proteins
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N-terminal segments modulate the α-helical propensities of the intrinsically disordered basic regions of bZIP proteins

机译:N末端片段调节bZIP蛋白内在无序的基本区域的α螺旋倾向

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Basic region leucine zippers (bZIPs) are modular transcription factors that play key roles in eukaryotic gene regulation. The basic regions of bZIPs (bZIP-bRs) are necessary and sufficient for DNA binding and specificity. Bioinformatic predictions and spectroscopic studies suggest that unbound monomeric bZIP-bRs are uniformly disordered as isolated domains. Here, we test this assumption through a comparative characterization of conformational ensembles for 15 different bZIP-bRs using a combination of atomistic simulations and circular dichroism measurements. We find that bZIP-bRs have quantifiable preferences for α-helical conformations in their unbound monomeric forms. This helicity varies from one bZIP-bR to another despite a significant sequence similarity of the DNA binding motifs (DBMs). Our analysis reveals that intramolecular interactions between DBMs and eight-residue segments directly N-terminal to DBMs are the primary modulators of bZIP-bR helicities. We test the accuracy of this inference by designing chimeras of bZIP-bRs to have either increased or decreased overall helicities. Our results yield quantitative insights regarding the relationship between sequence and the degree of intrinsic disorder within bZIP-bRs, and might have general implications for other intrinsically disordered proteins. Understanding how natural sequence variations lead to modulation of disorder is likely to be important for understanding the evolution of specificity in molecular recognition through intrinsically disordered regions (IDRs).
机译:基本区域亮氨酸拉链(bZIPs)是模块化的转录因子,在真核基因调控中起关键作用。 bZIPs(bZIP-bRs)的基本区域对于DNA结合和特异性而言是必要和充分的。生物信息学的预测和光谱学研究表明,未结合的单体bZIP-bRs作为分离的域均匀地无序。在这里,我们通过对15种不同bZIP-bRs的构象集合进行比较表征来测试此假设,方法是结合使用原子模拟和圆二色性测量。我们发现,bZIP-bRs对未结合单体形式的α-螺旋构象具有可量化的偏好。尽管DNA结合基序(DBM)具有明显的序列相似性,但这种螺旋性从一个bZIP-bR到另一个。我们的分析表明,DBM和直接位于DBM N端的8个残基片段之间的分子内相互作用是bZIP-bR螺旋度的主要调节剂。我们通过设计bZIP-bRs的嵌合体来增加或减少总体螺旋度来检验这种推断的准确性。我们的结果产生了有关序列与bZIP-bRs内在失序程度之间关系的定量见解,并且可能对其他内在失序的蛋白质具有一般意义。了解自然序列变异如何导致无序调节对于理解通过固有无序区(IDR)进行分子识别的特异性进化可能很重要。

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