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Crc 全局调节因子结合到 Pseudomonas putida alkS mRNA 编码序列中的未配对的富含 A 的基序上,并抑制翻译起始。

The Crc global regulator binds to an unpaired A-rich motif at the Pseudomonas putida alkS mRNA coding sequence and inhibits translation initiation.

机构信息

Departamento de Biotecnología Microbiana, Centro Nacional de Biotecnología, CSIC, Campus UAM, Cantoblanco, 28049 Madrid, Spain.

出版信息

Nucleic Acids Res. 2009 Dec;37(22):7678-90. doi: 10.1093/nar/gkp825.

Abstract

Crc is a key global translational regulator in Pseudomonads that orchestrates the hierarchy of induction of several catabolic pathways for amino acids, sugars, hydrocarbons or aromatic compounds. In the presence of amino acids, which are preferred carbon sources, Crc inhibits translation of the Pseudomonas putida alkS and benR mRNAs, which code for transcriptional regulators of genes required to assimilate alkanes (hydrocarbons) and benzoate (an aromatic compound), respectively. Crc binds to the 5'-end of these mRNAs, but the sequence and/or structure recognized, and the way in which it inhibits translation, were unknown. We have determined the secondary structure of the alkS mRNA 5'-end through its sensitivity to several ribonucleases and chemical reagents. Footprinting and band-shift assays using variant alkS mRNAs have shown that Crc specifically binds to a short unpaired A-rich sequence located adjacent to the alkS AUG start codon. This interaction is stable enough to prevent formation of the translational initiation complex. A similar Crc-binding site was localized at benR mRNA, upstream of the Shine-Dalgarno sequence. This allowed predicting binding sites at other Crc-regulated genes, deriving a consensus sequence that will help to validate new Crc targets and to discriminate between direct and indirect effects of this regulator.

摘要

Crc 是假单胞菌中一种关键的全局翻译调节因子,协调多种氨基酸、糖、碳氢化合物或芳香族化合物分解代谢途径的诱导层次。在氨基酸(首选碳源)存在的情况下,Crc 抑制编码用于同化烷烃(碳氢化合物)和苯甲酸(芳香族化合物)的基因的转录调节剂 Pseudomonas putida alkS 和 benR mRNA 的翻译。Crc 结合到这些 mRNA 的 5'-端,但识别的序列和/或结构以及它抑制翻译的方式尚不清楚。我们通过几种核糖核酸酶和化学试剂对 alkS mRNA 5'-端的敏感性来确定其二级结构。使用变体 alkS mRNAs 的足迹和带移位测定表明,Crc 特异性结合位于 alkS AUG 起始密码子附近的短非配对 A 丰富序列。这种相互作用足够稳定,可以防止翻译起始复合物的形成。在 Shine-Dalgarno 序列之前的 benR mRNA 上,定位了一个类似的 Crc 结合位点。这允许预测其他 Crc 调节基因的结合位点,推导出一个共识序列,这将有助于验证新的 Crc 靶标,并区分该调节剂的直接和间接影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f19e/2794181/05fb955a8e8e/gkp825f1.jpg

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