CONICET, Departamento de Ciencia y Tecnología, Laboratorio de Bioquímica, Microbiología e Interacciones Biológicas en el Suelo. Roque Sáenz Peña 352, Bernal B1876BXD, Universidad Nacional de Quilmes, Buenos Aires, Argentina.
CONICET, Facultad de Ciencias Exactas Físico-Químicas y Naturales, Departmento de Ciencias Naturales. Ruta Nacional 36 Km 601, Universidad Nacional de Río Cuarto, 5800 Río Cuarto, Córdoba, Argentina.
Environ Microbiol Rep. 2017 Oct;9(5):599-611. doi: 10.1111/1758-2229.12566. Epub 2017 Jul 21.
In this work, we surveyed the genome of P. protegens CHA0 in order to identify novel mRNAs possibly under the control of the Gac-Rsm cascade that might, for their part, serve to elucidate as-yet-unknown functions involved in the biocontrol of plant pathogens and/or in cellular processes required for fitness in natural environments. In view of the experimental evidence from former studies on the Gac-Rsm cascade, we developed a computational screen supported by a combination of sequence, structural and evolutionary constraints that led to a dataset of 43 potential novel mRNA targets. We then confirmed several mRNA targets experimentally and next focused on two of the respective genes that are physically linked to the orfamide biosynthetic gene cluster and whose predicted open-reading frames resembled cognate LuxR-type transcriptional regulators of cyclic lipopeptide clusters in related pseudomonads. In this report, we demonstrate that in strain CHA0, orfamide production is stringently dependent on a functional Gac-Rsm cascade and that both mRNAs encoding transcriptional regulatory proteins are under direct translational control of the RsmA/E proteins. Our results have thus revealed a hierarchical control over the expression of orfamide biosynthetic genes with the final transcriptional control subordinated to the global Gac-Rsm post-transcriptional regulatory system.
在这项工作中,我们调查了 P. protegens CHA0 的基因组,以鉴定可能受 Gac-Rsm 级联控制的新型 mRNA,这些 mRNA 可能部分用于阐明与植物病原体生物防治和/或自然环境中适应所需的细胞过程相关的未知功能。鉴于 Gac-Rsm 级联的先前研究的实验证据,我们开发了一个基于序列、结构和进化约束相结合的计算筛选,得到了 43 个潜在新型 mRNA 靶标的数据集。然后,我们通过实验验证了几个 mRNA 靶标,接下来集中研究了两个分别与类乳酰环肽簇生物合成基因簇物理相连的基因,它们的预测开放阅读框类似于相关假单胞菌中环状脂肽簇的同源 LuxR 型转录调节因子。在本报告中,我们证明在 CHA0 菌株中,类乳酰肽的产生严格依赖于功能正常的 Gac-Rsm 级联,并且编码转录调节蛋白的两个 mRNA 均受 RsmA/E 蛋白的直接翻译调控。因此,我们的结果揭示了对类乳酰肽生物合成基因表达的层次控制,最终的转录控制从属于全局 Gac-Rsm 转录后调控系统。