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The PhoP-Dependent ncRNA Mcr7 Modulates the TAT Secretion System in Mycobacterium tuberculosis

机译:PhoP依赖ncRNA Mcr7调节结核分枝杆菌中的TAT分泌系统。

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摘要

The PhoPR two-component system is essential for virulence in Mycobacterium tuberculosis where it controls expression of approximately 2% of the genes, including those for the ESX-1 secretion apparatus, a major virulence determinant. Mutations in phoP lead to compromised production of pathogen-specific cell wall components and attenuation both ex vivo and in vivo. Using antibodies against the native protein in ChIP-seq experiments (chromatin immunoprecipitation followed by high-throughput sequencing) we demonstrated that PhoP binds to at least 35 loci on the M. tuberculosis genome. The PhoP regulon comprises several transcriptional regulators as well as genes for polyketide synthases and PE/PPE proteins. Integration of ChIP-seq results with high-resolution transcriptomic analysis (RNA-seq) revealed that PhoP controls 30 genes directly, whilst regulatory cascades are responsible for signal amplification and downstream effects through proteins like EspR, which controls Esx1 function, via regulation of the espACD operon. The most prominent site of PhoP regulation was located in the intergenic region between rv2395 and PE_PGRS41, where the mcr7 gene codes for a small non-coding RNA (ncRNA). Northern blot experiments confirmed the absence of Mcr7 in an M. tuberculosis phoP mutant as well as low-level expression of the ncRNA in M. tuberculosis complex members other than M. tuberculosis. By means of genetic and proteomic analyses we demonstrated that Mcr7 modulates translation of the tatC mRNA thereby impacting the activity of the Twin Arginine Translocation (Tat) protein secretion apparatus. As a result, secretion of the immunodominant Ag85 complex and the beta-lactamase BlaC is affected, among others. Mcr7, the first ncRNA of M. tuberculosis whose function has been established, therefore represents a missing link between the PhoPR two-component system and the downstream functions necessary for successful infection of the host.
机译:PhoPR两组分系统对于结核分枝杆菌中的毒力至关重要,在该系统中,它控制着大约2%的基因表达,包括主要毒力决定因素ESX-1分泌装置的基因。 phoP中的突变导致病原体特异性细胞壁成分的产生受损,并且离体和体内均减弱。在ChIP-seq实验中使用抗天然蛋白质的抗体(染色质免疫沉淀,然后进行高通量测序),我们证明PhoP结合结核分枝杆菌基因组上的至少35个基因座。 PhoP regulon包含多个转录调节因子以及聚酮化合物合酶和PE / PPE蛋白的基因。 ChIP-seq结果与高分辨率转录组分析(RNA-seq)的整合显示,PhoP直接控制30个基因,而调控级联则负责通过诸如EsR的蛋白质(通过调控Esx1功能)的信号放大和下游效应,通过调控espACD操纵子。 PhoP调节的最突出位点位于rv2395和PE_PGRS41之间的基因间区域,其中mcr7基因编码小的非编码RNA(ncRNA)。 Northern印迹实验证实在结核分枝杆菌phoP突变体中不存在Mcr7,并且在结核分枝杆菌以外的结核分枝杆菌复合体成员中ncRNA的低水平表达。通过遗传和蛋白质组学分析,我们证明了Mcr7调节tatC mRNA的翻译,从而影响双精氨酸转运(Tat)蛋白质分泌设备的活性。结果,免疫优势的Ag85复合物和β-内酰胺酶BlaC的分泌受到影响。 Mcr7是第一个已确定功能的结核分枝杆菌ncRNA,因此代表了PhoPR两组分系统与成功感染宿主所必需的下游功能之间的缺失环节。

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