Lioliou Efthimia, Fechter Pierre, Caldelari Isabelle, Jester Brian C, Dubrac Sarah, Helfer Anne-Catherine, Boisset Sandrine, Vandenesch François, Romby Pascale, Geissmann Thomas
a Architecture et Réactivité de l'ARN, Université de Strasbourg, CNRS, IBMC , 15 rue René Descartes, Strasbourg , France.
b Institute of Systems and Synthetic Biology, University of Evry-Val-d'Essonne, CNRS FRE3561 , Evry , France.
RNA Biol. 2016;13(4):427-40. doi: 10.1080/15476286.2016.1153209. Epub 2016 Feb 22.
In Staphylococcus aureus, peptidoglycan metabolism plays a role in the host inflammatory response and pathogenesis. Transcription of the peptidoglycan hydrolases is activated by the essential 2-component system WalKR at low cell density. During stationary growth phase, WalKR is not active and transcription of the peptidoglycan hydrolase genes is repressed. In this work, we studied regulation of expression of the glycylglycine endopeptidase LytM. We show that, in addition to the transcriptional regulation mediated by WalKR, the synthesis of LytM is negatively controlled by a unique mechanism at the stationary growth phase. We have identified 2 different mRNAs encoding lytM, which vary in the length of their 5' untranslated (5'UTR) regions. LytM is predominantly produced from the WalKR-regulated mRNA transcript carrying a short 5'UTR. The lytM mRNA is also transcribed as part of a polycistronic operon with the upstream SA0264 gene and is constitutively expressed. Although SA0264 protein can be synthesized from the longer operon transcript, lytM cannot be translated because its ribosome-binding site is sequestered into a translationally inactive secondary structure. In addition, the effector of the agr system, RNAIII, can inhibit translation of lytM present on the operon without altering the transcript level but does not have an effect on the translation of the upstream gene. We propose that this dual regulation of lytM expression, at the transcriptional and post-transcriptional levels, contributes to prevent cell wall damage during the stationary phase of growth.
在金黄色葡萄球菌中,肽聚糖代谢在宿主炎症反应和发病机制中发挥作用。肽聚糖水解酶的转录在低细胞密度时由必需的双组分系统WalKR激活。在稳定生长期,WalKR不活跃,肽聚糖水解酶基因的转录受到抑制。在这项研究中,我们研究了甘氨酰甘氨酸内肽酶LytM的表达调控。我们发现,除了由WalKR介导的转录调控外,LytM的合成在稳定生长期还受到一种独特机制的负调控。我们鉴定出了2种不同的编码lytM的mRNA,它们的5'非翻译(5'UTR)区域长度不同。LytM主要由携带短5'UTR的WalKR调控的mRNA转录本产生。lytM mRNA也作为与上游SA0264基因组成的多顺反子操纵子的一部分进行转录,并组成性表达。虽然SA0264蛋白可以从较长的操纵子转录本中合成,但lytM不能翻译,因为其核糖体结合位点被隔离在一个翻译无活性的二级结构中。此外,agr系统的效应分子RNAIII可以抑制操纵子上lytM的翻译,而不改变转录水平,但对上游基因的翻译没有影响。我们认为,lytM表达在转录和转录后水平的这种双重调控,有助于在生长稳定期防止细胞壁损伤。