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维氏固氮菌中RsmZ小RNA的转录研究及其与藻酸盐和烷基间苯二酚生物合成的关系

Transcriptional Study of the RsmZ-sRNAs and Their Relationship to the Biosynthesis of Alginate and Alkylresorcinols in Azotobacter vinelandii.

作者信息

López-Pliego Liliana, García-Ramírez Liliana, Cruz-Gómez Emma Aurora, Domínguez-Ojeda Patricia, López-Pastrana Alejandra, Fuentes-Ramírez Luis Ernesto, Núñez Cinthia, Castañeda Miguel

机构信息

Centro de Investigaciones en Ciencias Microbiológicas, Instituto de Ciencias, Benemérita Universidad Autónoma de Puebla, Apdo. Postal 1622, 72000, Puebla, Puebla, México.

Departamento de Microbiología Molecular, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Apdo Postal 510-3, 62250, Cuernavaca, Morelos, México.

出版信息

Mol Biotechnol. 2018 Sep;60(9):670-680. doi: 10.1007/s12033-018-0102-7.

Abstract

The GacS/A system in Azotobacter vinelandii regulates alginate and alkylresorcinols production through RsmZ1, a small regulatory RNA (sRNA) that releases the translational repression of the algD and arpR mRNAs caused by the RsmA protein. In the Pseudomonadaceae family, the Rsm-sRNAs are grouped into three families: RsmX, RmsY and RsmZ. Besides RsmZ1, A. vinelandii has six other isoforms belonging to the RsmZ family and another one to the RsmY. Environmental signals controlling rsmsRNAs genes in A. vinelandii are unknown. In this work, we present a transcriptional study of the A. vinelandii rsmZ1-7-sRNAs genes, whose transcriptional profiles showed a differential expression pattern, but all of them exhibited their maximal expression at the stationary growth phase. Furthermore, we found that succinate promoted higher expression levels of all the rsmZ1-7 genes compared to glycolytic carbon sources. Single mutants of the rsmZ-sRNAs family were constructed and their impact on alginate production was assessed. We did not observe correlation between the alginate phenotype of each rsmZ-sRNA mutant and the expression level of the corresponding sRNA, which suggests the existence of additional factors affecting their impact on alginate production. Similar results were found in the regulation exerted by the RsmZ-sRNAs on alkylresorcinol synthesis.

摘要

棕色固氮菌中的GacS/A系统通过RsmZ1(一种小调控RNA(sRNA))来调节藻酸盐和烷基间苯二酚的产生,RsmZ1可解除由RsmA蛋白对algD和arpR mRNA的翻译抑制。在假单胞菌科中,Rsm-sRNAs可分为三个家族:RsmX、RmsY和RsmZ。除了RsmZ1,棕色固氮菌还有其他六种属于RsmZ家族的异构体以及另一种属于RsmY家族的异构体。控制棕色固氮菌中rsm sRNAs基因的环境信号尚不清楚。在这项工作中,我们对棕色固氮菌的rsmZ1-7-sRNAs基因进行了转录研究,其转录谱显示出差异表达模式,但所有这些基因在稳定生长期均表现出最大表达。此外,我们发现与糖酵解碳源相比,琥珀酸可促进所有rsmZ1-7基因的更高表达水平。构建了rsmZ-sRNAs家族的单突变体,并评估了它们对藻酸盐产生的影响。我们没有观察到每个rsmZ-sRNA突变体的藻酸盐表型与相应sRNA表达水平之间的相关性,这表明存在其他影响它们对藻酸盐产生作用的因素。在RsmZ-sRNAs对烷基间苯二酚合成的调控中也发现了类似的结果。

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