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Short peptides act as inducers, anti-inducers and corepressors of tet repressor

机译:短肽充当tet阻遏物的诱导剂,抗诱导剂和共抑制因子

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摘要

Protein allostery plays a pivotal role in many regulatory processes. Prominent examples are cell-surface receptors, which allosterically transmit ligand-generated signals to their cytoplasmic domains, or bacterial transcription factors, which alternate between a free conformation and a DNA-bound conformation in response to binding an effector molecule. The bacterial transcription factor Tet repressor (TetR) belongs to the latter category and is regarded as highly adapted to tetracyclines (tc's) as effectors. However, peptides isolated in this study were able to trigger distinct allosteric behavior including induction, anti-induction and corepression. Binding of the peptides' C-terminal residues consistently occurs within the tc-binding pocket of TetR. However, an extensive analysis of TetR mutants revealed that inducing and anti-inducing peptides utilize different parts of the binding pocket to elicit their respective regulatory responses. This study demonstrates that even for transcription factors evolved for high effector specificity, alternative molecular structures can exert similar and even novel effects, provided that sufficient chemical diversity and molecular flexibility, as found in peptide libraries, is accompanied by an efficient in vivo selection system. The high number of bioactive peptides and their extensive sequence diversity suggests that switching from small-molecule-controlled transcription regulation to a signal transduction network might be rather easily accomplished. These findings will strongly affect protein-mediated regulation of gene expression.
机译:蛋白质变构在许多调节过程中起着关键作用。突出的例子是细胞表面受体,其将配体产生的信号变构地传递至其胞质结构域,或细菌转录因子,其响应于结合效应子分子而在自由构象和DNA结合构象之间交替。细菌转录因子Tet阻遏物(TetR)属于后一类,被认为高度适合作为效应子的四环素(tc)。然而,在这项研究中分离出的肽能够触发独特的变构行为,包括诱导,抗诱导和共抑制。肽的C末端残基的结合始终在TetR的tc结合口袋内发生。但是,对TetR突变体的广泛分析表明,诱导肽和抗诱导肽利用结合袋的不同部分来引发它们各自的调节反应。这项研究表明,即使对于进化出具有高效应子特异性的转录因子,只要肽库中具有足够的化学多样性和分子柔性,并且具有有效的体内选择系统,替代分子结构也可以发挥相似甚至新颖的作用。大量的生物活性肽及其广泛的序列多样性表明,从小分子控制的转录调控向信号转导网络的转换可能相当容易实现。这些发现将强烈影响蛋白质介导的基因表达调控。

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