Leroy Anne, Vanzo Nathalie F, Sousa Sandra, Dreyfus Marc, Carpousis Agamemnon J
Laboratoire de Microbiologie et Génétique Moléculaire (CNRS, UMR 5100), Université Paul Sabatier, 118 rue de Narbonne, 31062 Toulouse, France.
Mol Microbiol. 2002 Sep;45(5):1231-43. doi: 10.1046/j.1365-2958.2002.03104.x.
RNase E contains a large non-catalytic region that binds RNA and the protein components of the Escherichia coli RNA degradosome. The rne gene was replaced with alleles encoding deletions in the non-catalytic part of RNase E. All the proteins are stable in vivo. RNase E activity was tested using a P(T7)-lacZ reporter gene, the message of which is particularly sensitive to degradation because translation is uncoupled from transcription. The non-catalytic region has positive and negative effectors of mRNA degradation. Disrupting RhlB and enolase binding resulted in hypoactivity, whereas disrupting PNPase binding resulted in hyperactivity. Expression of the mutant proteins in vivo anticorrelates with activity showing that autoregulation compensates for defective function. There is no simple correlation between RNA binding and activity in vivo. An allele (rne131), expressing the catalytic domain alone, was put under P(lac) control. In contrast to rne+,low expression of rne131 severely affects growth. Even with autoregulation, all the mutants are less fit when grown in competition with wild type. Although the catalytic domain of RNase E is sufficient for viability, our work demonstrates that elements in the non-catalytic part are necessary for normal activity in vivo.
核糖核酸酶E包含一个与RNA及大肠杆菌RNA降解体的蛋白质成分结合的大型非催化区域。rne基因被编码核糖核酸酶E非催化部分缺失的等位基因所取代。所有蛋白质在体内都是稳定的。使用P(T7)-lacZ报告基因测试核糖核酸酶E的活性,该报告基因的信使核糖核酸对降解特别敏感,因为翻译与转录解偶联。非催化区域具有信使核糖核酸降解的正效应物和负效应物。破坏RhlB和烯醇酶的结合会导致活性降低,而破坏PNP酶的结合会导致活性增强。突变蛋白在体内的表达与活性呈反相关,表明自动调节可弥补功能缺陷。在体内,RNA结合与活性之间没有简单的相关性。一个仅表达催化结构域的等位基因(rne131)置于P(lac)控制之下。与rne+相反,rne131的低表达严重影响生长。即使有自动调节,所有突变体在与野生型竞争生长时适应性都较差。虽然核糖核酸酶E的催化结构域足以维持细胞存活,但我们的研究表明,非催化部分的元件对于体内正常活性是必需的。