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构建 rsmX 共方差模型并鉴定番茄丁香假单胞菌 DC3000 中的 5 个 rsmX 非编码 RNA。

Construction of an rsmX co-variance model and identification of five rsmX non-coding RNAs in Pseudomonas syringae pv. tomato DC3000.

机构信息

Department of Plant Pathology and Plant-Microbe Biology, Cornell University, Ithaca, NY, USA.

出版信息

RNA Biol. 2010 Sep-Oct;7(5):508-16. doi: 10.4161/rna.7.5.12687. Epub 2010 Sep 1.

Abstract

Non-coding RNAs (ncRNAs) are important components of many regulatory pathways and have key roles in regulating diverse functions. In the Pseudomonads, the two-component system, GacA/S, directly regulates at least two well-characterized ncRNAs, RsmZ and RsmY, which act by sequestration of translation repressor proteins to control expression of various exoproducts. Pseudomonas fluorescens CHA0 possesses a third ncRNA, RsmX, which also participates in this regulatory pathway. In this study we confirmed expression of five rsmX ncRNAs in Pseudomonas syringae pv. tomato DC3000, and determined the distribution of the members of the rsmX ncRNA family by screening available genomic sequences of the Pseudomonads. Variable numbers of the rsmX family exist in Pseudomonas genomes, with up to five paralogs in Pseudomonas syringae strains. In Pseudomonas syringae pv. tomato DC3000, the rsmX genes are 112 to 120 nucleotides in size and are predicted by structural analysis to contain multiple exposed GGA motifs, which is consistent with structural features of the Rsm ncRNAs. We also found that these rsmX ncRNA genes share a conserved upstream region suggesting that their expression is dependent upon the global response regulator, GacA.

摘要

非编码 RNA(ncRNA)是许多调控途径的重要组成部分,在调控多种功能方面发挥着关键作用。在假单胞菌中,双组分系统 GacA/S 直接调控至少两种特征明确的 ncRNA,即 RsmZ 和 RsmY,它们通过隔离翻译抑制蛋白来控制各种外产物的表达。荧光假单胞菌 CHA0 拥有第三种 ncRNA,RsmX,它也参与了这个调控途径。在这项研究中,我们证实了番茄丁香假单胞菌 DC3000 中五个 rsmX ncRNA 的表达,并通过筛选假单胞菌的可用基因组序列来确定 rsmX ncRNA 家族成员的分布。rsmX 家族在假单胞菌基因组中的数量不同,在丁香假单胞菌菌株中最多有五个旁系同源物。在番茄丁香假单胞菌 DC3000 中,rsmX 基因大小为 112 到 120 个核苷酸,结构分析预测其含有多个暴露的 GGA 基序,这与 Rsm ncRNA 的结构特征一致。我们还发现这些 rsmX ncRNA 基因共享一个保守的上游区域,表明它们的表达依赖于全局响应调节剂 GacA。

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