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饥饿细胞中 RNA 结合蛋白作为 DNA 结合蛋白伴侣。

RNA-binding as chaperones of DNA binding proteins from starved cells.

机构信息

Department of Biotechnology, Yonsei University, Seoul, 03722, Republic of Korea; Department of Biomaterials Science and Engineering, Yonsei University, Seoul, 03722, Republic of Korea.

Department of Biotechnology, Yonsei University, Seoul, 03722, Republic of Korea.

出版信息

Biochem Biophys Res Commun. 2020 Apr 2;524(2):484-489. doi: 10.1016/j.bbrc.2020.01.121. Epub 2020 Jan 30.

Abstract

DNA-binding proteins from starved cells (Dps) in Escherichia coli protects DNA from multiple stresses during the stationary phase by forming a stable Dps-DNA complex. In contrast, Dps cannot bind to DNA during the exponential phase and it has not been clear why Dps conditionally binds to DNA depending on the growth phase. In this study, we show that DNA-free Dps in the exponential phase can also bind to RNA and the preemptive binding of RNA precludes DNA from interacting with Dps. The critical role of RNA in modulating the stability and functional competence of Dps and their morphology, leads us to propose a two-state model of Dps in executing stress responses. In the exponential phase, Dps is present predominantly as ribonucleoprotein complex. Under starvation, RNAs are degraded by up-regulated RNases, activating Dps to bind with chromosomal DNAs protecting them from diverse stresses. A dual role of RNA as an inhibitor of DNA binding and chaperone to keep dynamic functional status of Dps would be crucial for operating an immediate protection of chromosomal DNAs on starvation. The holdase-type chaperoning role of RNA in Dps-mediated stress responses would shed light on the role of RNAs as chaperone (Chaperna).

摘要

在大肠杆菌中,处于饥饿状态的细胞中的 DNA 结合蛋白(Dps)通过形成稳定的 Dps-DNA 复合物,在停滞期保护 DNA 免受多种应激。相比之下,Dps 在指数生长期不能与 DNA 结合,并且不清楚为什么 Dps 会根据生长阶段有条件地与 DNA 结合。在这项研究中,我们表明,指数生长期无 DNA 的 Dps 也可以与 RNA 结合,并且 RNA 的抢先结合阻止了 DNA 与 Dps 相互作用。RNA 在调节 Dps 的稳定性和功能能力及其形态方面的关键作用,使我们提出了 Dps 在执行应激反应中的两态模型。在指数生长期,Dps 主要以核糖核蛋白复合物的形式存在。在饥饿时,上调的 RNase 会降解 RNA,激活 Dps 与染色体 DNA 结合,保护它们免受多种应激。RNA 作为 DNA 结合抑制剂和分子伴侣的双重作用,对于在饥饿时立即保护染色体 DNA 至关重要。RNA 在 Dps 介导的应激反应中的热休克蛋白样伴侣作用,将阐明 RNA 作为伴侣(Chaperna)的作用。

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