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Crl蛋白的结构和功能特征以及与RNA聚合酶的RpoS/σS亚基相互作用所需保守表面残基的鉴定。

Structural and functional features of Crl proteins and identification of conserved surface residues required for interaction with the RpoS/σS subunit of RNA polymerase.

作者信息

Cavaliere Paola, Levi-Acobas Fabienne, Mayer Claudine, Saul Frederick A, England Patrick, Weber Patrick, Raynal Bertrand, Monteil Véronique, Bellalou Jacques, Haouz Ahmed, Norel Françoise

出版信息

Biochem J. 2014 Oct 15;463(2):215-24. doi: 10.1042/BJ20140578.

Abstract

In many γ-proteobacteria, the RpoS/σS sigma factor associates with the core RNAP (RNA polymerase) to modify global gene transcription in stationary phase and under stress conditions. The small regulatory protein Crl stimulates the association of σS with the core RNAP in Escherichia coli and Salmonella enterica serovar Typhimurium, through direct and specific interaction with σS. The structural determinants of Crl involved in σS binding are unknown. In the present paper we report the X-ray crystal structure of the Proteus mirabilis Crl protein (CrlPM) and a structural model for Salmonella Typhimurium Crl (CrlSTM). Using a combination of in vivo and in vitro assays, we demonstrated that CrlSTM and CrlPM are structurally similar and perform the same biological function. In the Crl structure, a cavity enclosed by flexible arms contains two patches of conserved and exposed residues required for σS binding. Among these, charged residues that are likely to be involved in electrostatic interactions driving Crl-σS complex formation were identified. CrlSTM and CrlPM interact with domain 2 of σS with the same binding properties as with full-length σS. These results suggest that Crl family members share a common mechanism of σS binding in which the flexible arms of Crl might play a dynamic role.

摘要

在许多γ-变形菌中,RpoS/σS 西格玛因子与核心RNA聚合酶(RNAP)结合,以在稳定期和应激条件下改变全局基因转录。小调节蛋白Crl通过与σS直接且特异性的相互作用,刺激大肠杆菌和鼠伤寒沙门氏菌中σS与核心RNAP的结合。参与σS结合的Crl的结构决定因素尚不清楚。在本文中,我们报道了奇异变形杆菌Crl蛋白(CrlPM)的X射线晶体结构以及鼠伤寒沙门氏菌Crl(CrlSTM)的结构模型。通过体内和体外试验相结合,我们证明CrlSTM和CrlPM在结构上相似且具有相同的生物学功能。在Crl结构中,由柔性臂包围的一个腔包含σS结合所需的两个保守且暴露的残基区域。其中,鉴定出了可能参与驱动Crl-σS复合物形成的静电相互作用的带电残基。CrlSTM和CrlPM与σS的结构域2相互作用,其结合特性与全长σS相同。这些结果表明,Crl家族成员共享一种σS结合的共同机制,其中Crl的柔性臂可能发挥动态作用。

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