Izutsu K, Wada A, Wada C
The Institute for Virus Research, Kyoto University, Shogoin-Kawaracho, Sakyo-Ku, Kyoto 606-8507, Japan.
Genes Cells. 2001 Aug;6(8):665-76. doi: 10.1046/j.1365-2443.2001.00457.x.
During the transition from the logarithmic to the stationary phase, 70S ribosomes are dimerized into the 100S form, which has no translational activity. Ribosome Modulation Factor (RMF) is induced during the stationary phase and binds to the 50S ribosomal subunit, which directs the dimerization of 70S ribosomes. Unlike many other genes induced in the stationary phase, rmf transcription is independent of the sigma S. To identify the factors that regulate the growth phase-dependent induction of rmf, mutant strains deficient in global regulators were examined for lacZ expression directed by the rmf promoter.
Among mutants of defective global regulators, only ppGpp deficiency (relA-spoT double mutant) drastically reduced the level of rmf transcription to less than 10% of that seen in the wild-type. Neither RMF nor 100S ribosomes were detected in this mutant in the stationary phase. rmf transcription correlated well with cellular ppGpp levels during amino acid starvation, IPTG induction of Ptrc-relA455 and in other mutants with artificially increased ppGpp levels. Although the growth rate also correlated inversely with both ppGpp levels and rmf transcription, the observation that the growth rates of the ppGpp-deficient and wild-type strains varied equivalently when grown on different media indicates that the link between rmf transcription and ppGpp levels is not a function of the growth rate.
ppGpp appears to positively regulate rmf transcription, at least in vivo. Thus, RMF provides a novel negative translational control by facilitating the formation of inactive ribosome dimers (100S) under the stringent circumstances of the stationary phase.
在从对数生长期向稳定期转变的过程中,70S核糖体二聚化形成100S形式,其没有翻译活性。核糖体调节因子(RMF)在稳定期被诱导产生,并与50S核糖体亚基结合,从而引导70S核糖体的二聚化。与许多在稳定期被诱导的其他基因不同,rmf转录不依赖于σS。为了鉴定调节rmf生长阶段依赖性诱导的因子,对缺乏全局调节因子的突变菌株进行了检测,以观察由rmf启动子指导的lacZ表达。
在有缺陷的全局调节因子突变体中,只有ppGpp缺乏(relA-spoT双突变体)能将rmf转录水平大幅降低至野生型的10%以下。在稳定期,该突变体中未检测到RMF和100S核糖体。在氨基酸饥饿、IPTG诱导Ptrc-relA455以及其他ppGpp水平人为升高的突变体中,rmf转录与细胞内ppGpp水平密切相关。尽管生长速率也与ppGpp水平和rmf转录呈负相关,但当在不同培养基上生长时,ppGpp缺陷型和野生型菌株的生长速率变化相当,这一观察结果表明rmf转录与ppGpp水平之间的联系不是生长速率的函数。
ppGpp似乎至少在体内对rmf转录起正调节作用。因此,RMF通过在稳定期的严格条件下促进无活性核糖体二聚体(100S)的形成,提供了一种新的负向翻译控制机制。