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The SsrA-SmpB Ribosome Rescue System Is Important for Growth of Bacillus subtilis at Low and High Temperatures

机译:SsrA-SmpB核糖体救援系统对于枯草芽孢杆菌在低温和高温下的生长很重要

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摘要

Bacillus subtilis has multiple stress response systems whose integrated action promotes growth and survival under unfavorable conditions. Here we address the function and transcriptional organization of a five-gene cluster containing ssrA, previously known to be important for growth at high temperature because of the role of its tmRNA product in rescuing stalled ribosomes. Reverse transcription-PCR experiments detected a single message for the secG-yvaK-rnr-smpB-ssrA cluster, suggesting that it constitutes an operon. However, rapid amplification of cDNA ends-PCR and lacZ fusion experiments indicated that operon transcription is complex, with at least five promoters controlling different segments of the cluster. One σA-like promoter preceded secG (P1), and internal σA-like promoters were found in both the rnr-smpB (P2) and smpB-ssrA intervals (P3 and PHS). Another internal promoter lay in the secG-yvaK intercistronic region, and this activity (PB) was dependent on the general stress factor σB. Null mutations in the four genes downstream from PB were tested for their effects on growth. Loss of yvaK (carboxylesterase E) or rnr (RNase R) caused no obvious phenotype. By contrast, smpB was required for growth at high temperature (52°C), as anticipated if its product (a small ribosomal binding protein) is essential for tmRNA (ssrA) function. Notably, smpB and ssrA were also required for growth at low temperature (16°C), a phenotype not previously associated with tmRNA activity. These results extend the known high-temperature role of ssrA and indicate that the ribosome rescue system is important at both extremes of the B. subtilis temperature range.
机译:枯草芽孢杆菌具有多种应激反应系统,其综合作用促进了不利条件下的生长和存活。在这里,我们讨论包含ssrA的五基因簇的功能和转录组织,该簇以前在高温下因其tmRNA产物在挽救停滞的核糖体中的作用而对高温生长很重要。逆转录-PCR实验检测到secG-yvaK-rnr-smpB-ssrA簇的单个信息,表明它构成操纵子。但是,cDNA末端的快速扩增-PCR和lacZ融合实验表明操纵子转录很复杂,至少有五个启动子控制着簇的不同部分。 secG(P1)之前有一个σ A 样启动子,并且在rnr-smpB(P2)和smpB-ssrA间隔中都发现了内部σ A 样启动子( P3和PHS)。另一个内部启动子位于secG-yvaK顺反子区域,该活性(PB)取决于总应激因子σ B 。测试了PB下游四个基因中的空突变对生长的影响。 yvaK(羧酸酯酶E)或 rnr (RNase R)的丢失没有明显的表型。相比之下, smpB 在高温(52°C)下生长是必需的,这是预期的,如果它的产物(一种小的核糖体结合蛋白)对于tmRNA( ssrA )是必不可少的功能。值得注意的是, smpB ssrA 在低温(16°C)下生长也是必需的,低温是以前与tmRNA活性无关的表型。这些结果扩展了 ssrA 的高温作用,并表明核糖体抢救系统在 B的两个极端情况下都很重要。枯草温度范围。

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