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首页> 外文期刊>Environmental microbiology >SuhB, a small non-coding RNA involved in catabolite repression of tetralin degradation genes in Sphingopyxis granuli strain TFA
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SuhB, a small non-coding RNA involved in catabolite repression of tetralin degradation genes in Sphingopyxis granuli strain TFA

机译:SUHB,一种小型非编码RNA,参与鞘蛋白颗粒菌株TFA中的传染代谢物抑制转酵母抑制基因

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摘要

Global dRNA-seq analysis of transcription start sites combined with in silico annotation using Infernal software revealed the expression of 91 putative non-coding sRNA in Sphingopyxis granuli TFA cells grown on different carbon sources. Excluding housekeeping sRNAs, only one additional sRNA, which belongs to the Rfam SuhB family (RF00519), was detected by Infernal but with an incorrect size according to the experimental results. SuhB is highly conserved across the Sphingopyxis genus. Expression data revealed that SuhB is present in rapidly growing TFA cells. A suhB deletion mutant exhibited de-repression of tetralin degradation (thn) gene expression and higher amounts of their LysR-type activator, ThnR, under conditions of carbon catabolite repression (CCR). Interaction between SuhB and the 5UTR of thnR mRNA was demonstrated in vitro. Moreover, co-immunoprecipitation experiments, combined with fluorescence measurements of gfp fusions to the 5UTR of thnR mRNA and the phenotype of an hfq deletion mutant, suggest the involvement of Hfq in this interaction. Taken together, these data support an Hfq-mediated repressive role for SuhB, on ThnR mRNA translation that prevents thn gene induction. SuhB, which is a highly conserved sRNA in the Sphingopyxis genus, is the first identified element directly involved in CCR of thn gene expression in S. granuli strain TFA.
机译:转录开始网站的全局DRNA-SEQ分析使用地狱软件与Silico注释相结合,揭示了在不同碳源生长的鞘皮甘蓝TFA细胞中的91推定的非编码SRNA表达。不包括管家SRNA,只有一个额外的SRNA,属于RFAM SUBB系列(RF00519),但根据实验结果,尺寸不正确。 Suhb在鞘氨XIS属中高度保守。表达数据显示,SUHB存在于快速生长的TFA细胞中。 SUHB缺失突变体表现出在碳分解代谢物抑制(CCR)条件下表现出转级萘降解(THN)基因表达和较高量的其Lysr型活化剂THNR。 SUHB与THNR mRNA的5utr之间的相互作用在体外进行了证明。此外,共免疫沉淀实验,与GFP融合的荧光测量结果联合到THNR mRNA的5utR和HFQ缺失突变体的表型,表明HFQ在这种相互作用中的累及。在一起,这些数据支持SUHB的HFQ介导的抑制作用,在THNR mRNA翻译中阻止基因诱导。 SUHB是鞘皮复杂属中高度保守的SRNA,是直接参与S.甘蓝菌株TFA中CCR的第一个鉴定的元素。

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