首页> 外文OA文献 >Translational feedback regulation of the gene for L35 in Escherichia coli requires binding of ribosomal protein L20 to two sites in its leader mRNA: a possible case of ribosomal RNA-messenger RNA molecular mimicry.
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Translational feedback regulation of the gene for L35 in Escherichia coli requires binding of ribosomal protein L20 to two sites in its leader mRNA: a possible case of ribosomal RNA-messenger RNA molecular mimicry.

机译:大肠杆菌中L35的基因的翻译反馈调节需要将核糖体蛋白L20与其前导mRNA的两个位点结合:可能是核糖体RNA信使RNA分子模拟的情况。

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摘要

In addition to being a component of the large ribosomal subunit, ribosomal protein L20 of Escherichia coli also acts as a translational repressor. L20 is synthesized from the IF3 operon that contains three cistrons coding for IF3, and ribosomal proteins L35 and L20. L20 directly represses the expression of the gene encoding L35 and the expression of its own gene by translational coupling. All of the cis-acting sequences required for repression by L20, called the operator, are found on an mRNA segment extending from the middle of the IF3 gene to the start of the L35 gene. L20-mediated repression requires a long-range base-pairing interaction between nucleotide residues within the IF3 gene and residues just upstream of the L35 gene. This interaction results in the formation of a pseudoknot. Here we show that L20 causes protection of nucleotide residues in two regions of the operator in vitro. The first region is the pseudoknot itself and the second lies in an irregular stem located upstream of the L35 gene. By primer extension analysis, we show that L20 specifically induces reverse transcriptase stops in both regions. Therefore, these two regions define two L20-binding sites in the operator. Using mutations and deletions of rpml'-'lacZ fusions, we show that both sites are essential for repression in vivo. However L20 can bind to each site independently in vitro. One site is similar to the L20-binding site on 23S rRNA. Here we propose that L20 recognizes its mRNA and its rRNA in similar way.
机译:大肠杆菌的核糖体蛋白L20除了是较大的核糖体亚基的组成部分外,还充当翻译阻遏物。 L20是由IF3操纵子合成的,该操纵子包含三个编码IF3的顺反子以及核糖体蛋白L35和L20。 L20通过翻译偶联直接抑制编码L35的基因的表达及其自身基因的表达。 L20抑制所需的所有顺式作用序列(称为操纵子)均在从IF3基因的中间延伸至L35基因的起始区域的mRNA片段上发现。 L20介导的阻抑需要IF3基因内的核苷酸残基与L35基因上游的残基之间进行长距离碱基配对相互作用。这种相互作用导致假结的形成。在这里,我们显示L20可以在操作员的两个区域中引起核苷酸残基的保护。第一个区域是假结本身,第二个区域位于L35基因上游的不规则茎中。通过引物延伸分析,我们显示L20特异性诱导两个区域中的逆转录酶终止。因此,这两个区域在操纵子中定义了两个L20结合位点。使用rpm1'-'lacZ融合的突变和缺失,我们显示这两个位点对于体内抑制都是必不可少的。然而,L20可以在体外独立地结合至每个位点。一个位点类似于23S rRNA上的L20结合位点。在这里,我们建议L20以类似的方式识别其mRNA和rRNA。

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