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乳酸乳球菌的转录组图谱揭示了许多新的RNA,包括一种参与碳摄取和代谢的小调控RNA。

Transcriptome landscape of Lactococcus lactis reveals many novel RNAs including a small regulatory RNA involved in carbon uptake and metabolism.

作者信息

van der Meulen Sjoerd B, de Jong Anne, Kok Jan

机构信息

a Department of Molecular Genetics, Groningen Biomolecular Sciences and Biotechnology Institute , University of Groningen , Groningen , The Netherlands.

b Top Institute Food and Nutrition (TIFN) , Wageningen , The Netherlands.

出版信息

RNA Biol. 2016;13(3):353-66. doi: 10.1080/15476286.2016.1146855. Epub 2016 Mar 7.

Abstract

RNA sequencing has revolutionized genome-wide transcriptome analyses, and the identification of non-coding regulatory RNAs in bacteria has thus increased concurrently. Here we reveal the transcriptome map of the lactic acid bacterial paradigm Lactococcus lactis MG1363 by employing differential RNA sequencing (dRNA-seq) and a combination of manual and automated transcriptome mining. This resulted in a high-resolution genome annotation of L. lactis and the identification of 60 cis-encoded antisense RNAs (asRNAs), 186 trans-encoded putative regulatory RNAs (sRNAs) and 134 novel small ORFs. Based on the putative targets of asRNAs, a novel classification is proposed. Several transcription factor DNA binding motifs were identified in the promoter sequences of (a)sRNAs, providing insight in the interplay between lactococcal regulatory RNAs and transcription factors. The presence and lengths of 14 putative sRNAs were experimentally confirmed by differential Northern hybridization, including the abundant RNA 6S that is differentially expressed depending on the available carbon source. For another sRNA, LLMGnc_147, functional analysis revealed that it is involved in carbon uptake and metabolism. L. lactis contains 13% leaderless mRNAs (lmRNAs) that, from an analysis of overrepresentation in GO classes, seem predominantly involved in nucleotide metabolism and DNA/RNA binding. Moreover, an A-rich sequence motif immediately following the start codon was uncovered, which could provide novel insight in the translation of lmRNAs. Altogether, this first experimental genome-wide assessment of the transcriptome landscape of L. lactis and subsequent sRNA studies provide an extensive basis for the investigation of regulatory RNAs in L. lactis and related lactococcal species.

摘要

RNA测序彻底改变了全基因组转录组分析,细菌中非编码调控RNA的鉴定也因此同步增加。在这里,我们通过采用差异RNA测序(dRNA-seq)以及手动和自动转录组挖掘相结合的方法,揭示了乳酸菌模式菌株乳酸乳球菌MG1363的转录组图谱。这导致了乳酸乳球菌的高分辨率基因组注释,并鉴定出60个顺式编码反义RNA(asRNA)、186个反式编码假定调控RNA(sRNA)和134个新的小开放阅读框。基于asRNA的假定靶标,提出了一种新的分类方法。在(a)sRNA的启动子序列中鉴定出了几种转录因子DNA结合基序,这为深入了解乳球菌调控RNA与转录因子之间的相互作用提供了线索。通过差异Northern杂交实验证实了14个假定sRNA的存在和长度,包括根据可用碳源差异表达的丰富RNA 6S。对于另一个sRNA,LLMGnc_147,功能分析表明它参与碳摄取和代谢。乳酸乳球菌含有13%的无领导mRNA(lmRNA),通过对基因本体论(GO)类别的过度表达分析,这些mRNA似乎主要参与核苷酸代谢和DNA/RNA结合。此外,还发现了起始密码子后紧跟的富含A的序列基序,这可能为lmRNA的翻译提供新的见解。总之,对乳酸乳球菌转录组景观的首次全基因组实验评估以及随后的sRNA研究为研究乳酸乳球菌和相关乳球菌属中的调控RNA提供了广泛的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95fe/4829306/cdbd35ad887a/krnb-13-03-1146855-g001.jpg

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