Ahmed Manar M, Aboshanab Khaled M, Ragab Yasser M, Missiakas Dominique M, Aly Khaled A
Department of Microbiology and Immunology, Faculty of Pharmacy and Pharmaceutical Industries, Sinai University, El-Masaeed, El-Arish, North Sinai, Egypt.
Department of Microbiology and Immunology, Faculty of Pharmacy, Ain Shams University, Cairo, 11566, Egypt.
Arch Microbiol. 2018 Sep;200(7):1075-1086. doi: 10.1007/s00203-018-1519-x. Epub 2018 May 8.
The ESAT-6-like secretion system (ESS) of Staphylococcus aureus plays a significant role in persistent infections. EssB is a highly conserved bitopic ESS protein comprising a cytosolic N-terminus, single transmembrane helix and a C-terminus located on the trans-side of the membrane. Six systematic truncations covering various domains of EssB were constructed, followed by bacterial two-hybrid screening of their interaction with EsaA, another conserved integral membrane component of the ESS pathway. Results show that the transmembrane domain of EssB is critical for heterodimerization with EsaA. In vivo crosslinking followed by Western blot analysis revealed high molecular weight species when wild-type EssB and EsaA were crosslinked, but this band was not detected in the absence of the transmembrane domain of EssB. Heterologous overproduction of EssB, EsaA and five other components of the ESS pathway in Escherichia coli BL21(DE3), followed by fractionation experiments led to a remarkable increase in the periplasmic protein content, suggesting the assembly of partially regulated secretion mechanism. These data identify the transmembrane domain of EssB as indispensable for interaction with EsaA, thereby facilitating protein secretion across bacterial membranes in a fashion that requires other components of the ESS pathway.
金黄色葡萄球菌的ESAT-6样分泌系统(ESS)在持续性感染中发挥着重要作用。EssB是一种高度保守的双位ESS蛋白,由胞质N端、单个跨膜螺旋和位于膜外侧的C端组成。构建了覆盖EssB各个结构域的六个系统性截短体,随后通过细菌双杂交筛选它们与EsaA(ESS途径的另一个保守的整合膜成分)的相互作用。结果表明,EssB的跨膜结构域对于与EsaA形成异源二聚体至关重要。体内交联后进行蛋白质印迹分析显示,野生型EssB和EsaA交联时出现高分子量条带,但在缺失EssB跨膜结构域时未检测到该条带。在大肠杆菌BL21(DE3)中异源过量表达EssB、EsaA和ESS途径的其他五个成分,随后进行分级分离实验,导致周质蛋白含量显著增加,这表明部分受调控的分泌机制得以组装。这些数据表明EssB的跨膜结构域对于与EsaA相互作用不可或缺,从而以需要ESS途径其他成分的方式促进蛋白质跨细菌膜分泌。