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A role for a bacterial ortholog of the Ro autoantigen in starvation-induced rRNA degradation

机译:Ro自身抗原的细菌直系同源物在饥饿诱导的rRNA降解中的作用

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摘要

Cellular adaptations to stress often involve changes in RNA metabolism. One RNA-binding protein that has been implicated in RNA handling during environmental stress in both animal cells and prokaryotes is the Ro autoantigen. However, the function of Ro in stress conditions has been unknown. We report that a Ro protein in the radiation-resistant eubacterium Deinococcus radiodurans participates in ribosomal RNA (rRNA) degradation during growth in stationary phase, a form of starvation. Levels of the Ro ortholog Rsr increase dramatically during growth in stationary phase and the presence of Rsr confers a growth advantage. Examination of rRNA profiles reveals that Rsr, the 3′ to 5′ exoribonuclease polynucleotide phosphorylase (PNP) and additional nucleases are all involved in the extensive rRNA decay that occurs during starvation of this bacterium. We show that Rsr, PNP, and an Rsr-PNP complex exhibit increased sedimentation with ribosomal subunits during stationary phase. As the fractionation of PNP with ribosomal subunits is strongly enhanced in the presence of Rsr, we propose that Ro proteins function as cofactors to increase the association of exonucleases with certain substrates during stress.
机译:细胞对压力的适应通常涉及RNA代谢的变化。 Ro自身抗原是一种在动物细胞和原核生物都受到环境压力的过程中参与RNA处理的RNA结合蛋白。但是,Ro在压力条件下的功能尚不清楚。我们报告说,在辐射抗性真细菌Deinococcus radiodurans中的Ro蛋白参与了在核糖体RNA(rRNA)降解过程中在固定相中的生长,这是一种饥饿的形式。 Ro直向同源物Rsr的水平在固定相的生长过程中急剧增加,Rsr的存在赋予了生长优势。对rRNA谱的检查表明,Rsr,3'至5'外核糖核酸酶多核苷酸磷酸化酶(PNP)和其他核酸酶均参与了该细菌饥饿期间发生的广泛rRNA衰变。我们显示Rsr,PNP和Rsr-PNP复杂表现出增加的沉降与核糖体亚基在固定阶段。由于Rsr的存在会大大增强PNP与核糖体亚基的分离,因此我们建议Ro蛋白起辅因子的作用,以增加应激期间外切核酸酶与某些底物的缔合。

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