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与 RNA 结合的 ANTAR 反终止子结构特征。

Structural characterization of the ANTAR antiterminator domain bound to RNA.

机构信息

School of Life and Environmental Science, Faculty of Science, University of Sydney, Sydney, NSW 2006, Australia.

出版信息

Nucleic Acids Res. 2022 Mar 21;50(5):2889-2904. doi: 10.1093/nar/gkac074.

Abstract

Regulated transcription termination provides an efficient and responsive means to control gene expression. In bacteria, rho-independent termination occurs through the formation of an intrinsic RNA terminator loop, which disrupts the RNA polymerase elongation complex, resulting in its dissociation from the DNA template. Bacteria have a number of pathways for overriding termination, one of which is the formation of mutually exclusive RNA motifs. ANTAR domains are a class of antiterminator that bind and stabilize dual hexaloop RNA motifs within the nascent RNA chain to prevent terminator loop formation. We have determined the structures of the dimeric ANTAR domain protein EutV, from Enterococcus faecialis, in the absence of and in complex with the dual hexaloop RNA target. The structures illustrate conformational changes that occur upon RNA binding and reveal that the molecular interactions between the ANTAR domains and RNA are restricted to a single hexaloop of the motif. An ANTAR domain dimer must contact each hexaloop of the dual hexaloop motif individually to prevent termination in eubacteria. Our findings thereby redefine the minimal ANTAR domain binding motif to a single hexaloop and revise the current model for ANTAR-mediated antitermination. These insights will inform and facilitate the discovery of novel ANTAR domain RNA targets.

摘要

调控转录终止为控制基因表达提供了一种高效且响应迅速的方法。在细菌中,rho 因子独立终止是通过形成内在的 RNA 终止子环来实现的,该终止子环破坏了 RNA 聚合酶延伸复合物,导致其从 DNA 模板解离。细菌有多种方法可以克服终止,其中一种方法是形成相互排斥的 RNA 基序。ANTAR 结构域是一类反终止子,它们结合并稳定新生 RNA 链内的双六螺旋 RNA 基序,以防止终止子环的形成。我们已经确定了来自粪肠球菌的二聚体 ANTAR 结构域蛋白 EutV 在没有和与双六螺旋 RNA 靶标结合时的结构。这些结构说明了 RNA 结合时发生的构象变化,并揭示了 ANTAR 结构域与 RNA 之间的分子相互作用仅限于基序的单个六螺旋。一个 ANTAR 结构域二聚体必须单独接触双六螺旋基序的每个六螺旋,以防止在真细菌中终止。因此,我们的发现将最小的 ANTAR 结构域结合基序重新定义为单个六螺旋,并修改了 ANTAR 介导的反终止的当前模型。这些见解将为发现新型 ANTAR 结构域 RNA 靶标提供信息和便利。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f382/8934654/819f7e92202b/gkac074figgra1.jpg

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