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新型结构均一(Hfq)聚集体的分离与部分特性鉴定,这些聚集体携带辅助转录和翻译因子。

Isolation and Partial Characterization of Novel, Structurally Uniform (Hfq) Assemblies Carrying Accessory Transcription and Translation Factors.

机构信息

Department of Chemistry and Biochemistry, Lamar University, Beaumont, Texas 77710, United States.

出版信息

Biochemistry. 2024 Jul 2;63(13):1647-1662. doi: 10.1021/acs.biochem.3c00728. Epub 2024 Jun 13.

Abstract

In growing cells, the transcription-translation complexes (TTCs) form characteristic foci; however, the exact molecular composition of these superstructures is not known with certainty. Herein, we report that, during our recently developed "fast" procedures for purification of RNA polymerase (RP), a fraction of the RP's α/RpoA subunits is displaced from the core RP complexes and copurifies with multiprotein superstructures carrying the nucleic acid-binding protein Hfq and the ribosomal protein S6. We show that the main components of these large multiprotein assemblies are fixed protein copy-number (Hfq) complexes; these complexes have a high level of structural uniformity and are distinctly unlike the previously described (Hfq) "head-to-tail" polymers. We describe purification of these novel, structurally uniform (Hfq) complexes to near homogeneity and show that they also contain small nonprotein molecules and accessory S6. We demonstrate that Hfq, S6, and RP have similar solubility profiles and present evidence pointing to a role of the Hfq C-termini in superstructure formation. Taken together, our data offer new insights into the composition of the macromolecular assemblies likely acting as scaffolds for transcription complexes and ribosomes during bacterial cells' active growth.

摘要

在生长中的细胞中,转录-翻译复合物(TTCs)形成特征焦点;然而,这些超结构的确切分子组成尚不确定。在此,我们报告在我们最近开发的快速纯化 RNA 聚合酶(RP)的程序中,RP 的α/RpoA 亚基的一部分从核心 RP 复合物中置换出来,并与携带核酸结合蛋白 Hfq 和核糖体蛋白 S6 的多蛋白超结构共纯化。我们表明,这些大型多蛋白组装体的主要成分是固定蛋白拷贝数(Hfq)复合物;这些复合物具有高度的结构均匀性,与先前描述的(Hfq)“头对头”聚合物明显不同。我们描述了这些新型结构均匀的(Hfq)复合物的近乎均相纯化,并表明它们还含有小分子非蛋白分子和辅助 S6。我们证明 Hfq、S6 和 RP 具有相似的溶解度曲线,并提供了指向 Hfq C 末端在超结构形成中作用的证据。总之,我们的数据为可能作为细菌细胞活跃生长过程中转录复合物和核糖体支架的大分子组装体的组成提供了新的见解。

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