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一种专有的α/β 密码子指导 TetR-肽复合物的变构。

An exclusive α/β code directs allostery in TetR-peptide complexes.

机构信息

Lehrstuhl für Biotechnik, Department of Biology, Friedrich-Alexander University Erlangen-Nuremberg, Henkestr. 91, D-91052 Erlangen, Germany.

出版信息

J Mol Biol. 2012 Feb 10;416(1):46-56. doi: 10.1016/j.jmb.2011.12.008. Epub 2011 Dec 9.

Abstract

The allosteric mechanism of one of the best characterized bacterial transcription regulators, tetracycline repressor (TetR), has recently been questioned. Tetracycline binding induces cooperative folding of TetR, as suggested by recent unfolding studies, rather than switching between two defined conformational states, namely a DNA-binding-competent conformation and a non-DNA-binding conformation. Upon ligand binding, a host of near-native multiconformational structures collapse into a single, highly stabilized protein conformation that is no longer able to bind DNA. Here, structure-function studies performed with four synthetic peptides that bind to TetR and mimic the function of low-molecular-weight effectors, such as tetracyclines, provide new means to discriminate between different allosteric models. Whereas two inducing peptides bind in an extended β-like conformation, two anti-inducing peptides form an α-helix in the effector binding site of TetR. This exclusive bimodal interaction mode coincides with two distinct overall conformations of TetR, namely one that is identical with induced TetR and one that mirrors the DNA-bound state of TetR. Urea-induced unfolding studies show no increase in thermodynamic stability for any of the peptide complexes, although fluorescence measurements demonstrate peptide binding to TetR. This strongly suggests that, at least for these peptide effectors, a classical two-state allosteric model best describes TetR function.

摘要

最近,人们对研究最为透彻的一种细菌转录调控因子——四环素阻遏蛋白(TetR)的变构机制提出了质疑。最近的去折叠研究表明,四环素结合诱导 TetR 发生协同折叠,而不是在两种确定的构象状态(即 DNA 结合能力构象和非 DNA 结合构象)之间切换。配体结合后,大量近天然的多构象结构会坍塌成一种单一的、高度稳定的蛋白质构象,这种构象不再能够与 DNA 结合。在这里,使用四个与 TetR 结合并模拟低分子量效应物(如四环素)功能的合成肽进行的结构-功能研究,为区分不同的变构模型提供了新的方法。虽然两个诱导肽以伸展的 β 样构象结合,但两个抗诱导肽在 TetR 的效应物结合位点形成α-螺旋。这种独特的二模态相互作用模式与 TetR 的两种不同的总体构象一致,一种与诱导型 TetR 相同,另一种与 TetR 的 DNA 结合状态相似。脲诱导的去折叠研究表明,对于任何肽复合物,热力学稳定性都没有增加,尽管荧光测量表明肽与 TetR 结合。这强烈表明,至少对于这些肽效应物,经典的二态变构模型最能描述 TetR 的功能。

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