首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Crystal structure and RNA-binding properties of an Hfq homolog from the deep-branching Aquificae: conservation of the lateral RNA-binding mode
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Crystal structure and RNA-binding properties of an Hfq homolog from the deep-branching Aquificae: conservation of the lateral RNA-binding mode

机译:来自深层灌注的HFQ同源物的晶体结构和RNA结合特性:横向RNA结合模式的保护

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摘要

The host factor Hfq, as the bacterial branch of the Sm family, is an RNA-binding protein involved in the post-transcriptional regulation of mRNA expression and turnover. Hfq facilitates pairing between small regulatory RNAs (sRNAs) and their corresponding mRNA targets by binding both RNAs and bringing them into close proximity. Hfq homologs self-assemble into homo-hexameric rings with at least two distinct surfaces that bind RNA. Recently, another binding site, dubbed the 'lateral rim', has been implicated in sRNAboldmRNA annealing/bold; the RNA-binding properties of this site appear to be rather subtle, and its degree of evolutionary conservation is unknown. An Hfq homolog has been identified in the phylogenetically deep-branching thermophile Aquifex aeolicus (Aae), but little is known about the structure and function of Hfq from basal bacterial lineages such as the Aquificae. Therefore, Aae Hfq was cloned, overexpressed, purified, crystallized and biochemically characterized. Structures of Aae Hfq were determined in space groups P1 and P6, both to 1.5 angstrom resolution, and nanomolar-scale binding affinities for uridine-and adenosine-rich RNAs were discovered. Co-crystallization with U-6 RNA reveals that the outer rim of the Aae Hfq hexamer features a well defined binding pocket that is selective for uracil. This Aae Hfq structure, combined with biochemical and biophysical characterization of the homolog, reveals deep evolutionary conservation of the lateral RNA-binding mode, and lays a foundation for further studies of Hfq-associated RNA biology in ancient bacterial phyla.
机译:作为SM系列的细菌分支的主体因子HFQ是参与MRNA表达和转单的转录后调节的RNA结合蛋白。 HFQ通过结合RNA并使它们靠近,促进小型调节RNA(SRNA)及其相应的mRNA靶标配对。 HFQ同源物自组装成具有至少两个结合RNA的不同表面的同源 - 六偏光环。最近,另一个绑定站点被称为“横向边缘”,在SRNA中涉及SRNA&粗体& mRNA退火& / bold&gt ;;该遗址的RNA结合特性似乎具有相当微妙,其进化守恒程度是未知的。已经在系统源性深嗜热嗜热嗜热含量(AAE)中鉴定了HFQ同源物,但是关于HFQ的结构和功能几乎没有人从诸如水中的基底细菌谱系中的结构和功能。因此,克隆,过表达,纯化,结晶和生物化学表征的AAE HFQ。在空间组P1和P6中测定AAE HFQ的结构,既不1.5埃分辨率,也发现尿苷和富含腺苷的RNA的纳米摩尔级结合亲和力。用U-6 RNA共结晶显示AAE HFQ六烷烃的外缘具有良好定义的结合口袋,其为尿嘧啶选择性。这种AAE HFQ结构与同源物的生化和生物物理表征结合揭示了横向RNA结合模式的深度进化守恒,并为古代细菌植物中的HFQ相关RNA生物学进行了进一步研究的基础。

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