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Transcription analysis and small non-protein coding RNAs associated with bacterial ribosomal protein operons

机译:与细菌核糖体蛋白操纵子相关的转录分析和小的非蛋白编码小RNA

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摘要

For decades ribosome biogenesis and translation represent key targets in the antimicrobial drug development to combat bacterial infections. Here we report a survey of various small non-protein coding (ncRNAs) associated with ribosomal protein (r-protein) operons in the bacterial pathogens S. aureus, V. cholerae, S. Typhi and M. tuberculosis. We identified four ncRNA candidates that overlap with important structural regions involved in translational feedback regulation. Most notable are the ncRNA 55 family containing the unique recognition site of the L10-(L12)4 complex that consequently might be involved in L10 operon regulation, and ncRNA StyR 337 that resembles the pseudoknot secondary structure of the S4 regulatory region. These findings potentially implicate the candidate ncRNAs in translational regulation of the corresponding operons. In total we report 28 intergenically encoded ncRNAs that map in sense orientation to 14 ribosomal protein operons and 13 cis-antisense encoded ncRNAs transcribed complementary to nine r-protein mRNAs. All ncRNA candidates were independently validated by extensive Northern blot hybridizations to account for growth-stage specific ncRNA transcription and to check ncRNA integrity. In addition we revisited the str-operon as experimental model to monitor internal initiation of transcription in the operon throughout bacterial growth by real-time PCR. Our data indicate additional facets of ribosomal protein operons transcription, and might lead to novel insights of ribosome biogenesis, as well as exploration of strategies involving differential drug development.
机译:几十年来,核糖体的生物发生和翻译代表了抗细菌药物开发中对抗细菌感染的关键目标。在这里,我们报告了细菌病原体金黄色葡萄球菌,霍乱弧菌,伤寒沙门氏菌和结核分枝杆菌中与核糖体蛋白(r蛋白)操纵子相关的各种小型非蛋白编码(ncRNA)的调查。我们确定了四个ncRNA候选物,它们与翻译反馈调控中涉及的重要结构区域重叠。最值得注意的是ncRNA 55家族,其中包含L10-(L12)4复合物的独特识别位点,因此可能参与L10操纵子调控,而ncRNA StyR 337则类似于S4调控区的假结二级结构。这些发现可能暗示候选ncRNA参与相应操纵子的翻译调控。我们总共报告了28个基因编码的ncRNA,它们以有义方向映射到14个核糖体蛋白操纵子和13个顺式反义编码的ncRNA,它们与9个r蛋白mRNA互补转录。所有ncRNA候选物均通过广泛的Northern杂交杂交独立验证,以说明生长阶段特异性ncRNA转录并检查ncRNA完整性。另外,我们将str-操纵子重新作为实验模型,通过实时PCR监测整个细菌生长过程中操纵子内部转录的启动。我们的数据表明核糖体蛋白操纵子转录的其他方面,并可能导致核糖体生物发生的新见解,以及对涉及差异药物开发的策略的探索。

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