School of Life Sciences, The Chinese University of Hong Kong, Shatin, Hong Kong 999077, China.
School of Biomedical Sciences, The Chinese University of Hong Kong, Shatin, Hong Kong 999077, China.
Int J Mol Sci. 2024 Sep 3;25(17):9550. doi: 10.3390/ijms25179550.
PE/PPE proteins secreted by the ESX-5 type VII secretion system constitute a major protein repertoire in pathogenic mycobacteria and are essential for bacterial survival, pathogenicity, and host-pathogen interaction; however, little is known about their expression and secretion. The scarcity of arginine and lysine residues in PE/PPE protein sequences and the high homology of their N-terminal domains limit protein identification using classical trypsin-based proteomic methods. This study used endoproteinase AspN and trypsin to characterize the proteome of Twenty-seven PE/PPE proteins were uniquely identified in AspN digests, especially PE_PGRS proteins. These treatments allowed the identification of approximately 50% of the PE/PPE pool encoded in the genome. Moreover, EspG5 pulldown assays retrieved 44 ESX-5-associated PPE proteins, covering 85% of the PPE pool in the identified proteome. The identification of PE/PE_PGRS proteins in the EspG5 interactome suggested the presence of PE-PPE pairs. The correlation analysis between protein abundance and phylogenetic relationships found potential PE/PPE pairs, indicating the presence of multiple PE/PE_PGRS partners in one PPE. We validated that EspG5 interacted with PPE31 and PPE32 and mapped critical residues for complex formation. The modified proteomic platform increases the coverage of PE/PPE proteins and elucidates the expression and localization of these proteins.
PE/PPE 蛋白由 ESX-5 型 VII 型分泌系统分泌,构成致病性分枝杆菌的主要蛋白质组,对细菌的生存、致病性和宿主-病原体相互作用至关重要;然而,它们的表达和分泌知之甚少。PE/PPE 蛋白序列中精氨酸和赖氨酸残基的缺乏以及它们的 N 端结构域的高度同源性限制了使用经典的基于胰蛋白酶的蛋白质组学方法进行蛋白质鉴定。本研究使用内切蛋白酶 AspN 和胰蛋白酶来表征 27 种 PE/PPE 蛋白在 AspN 消化物中被独特识别,特别是 PE_PGRS 蛋白。这些处理方法可以鉴定出基因组中编码的 PE/PPE 池的大约 50%。此外,EspG5 下拉测定回收了 44 种 ESX-5 相关的 PPE 蛋白,覆盖了鉴定的蛋白质组中 PPE 池的 85%。PE/PE_PGRS 蛋白在 EspG5 相互作用组中的鉴定表明存在 PE-PPE 对。蛋白质丰度与系统发育关系的相关分析发现了潜在的 PE/PPE 对,表明在一个 PPE 中有多个 PE/PE_PGRS 伴侣。我们验证了 EspG5 与 PPE31 和 PPE32 相互作用,并绘制了复合物形成的关键残基。改良的蛋白质组学平台增加了 PE/PPE 蛋白的覆盖范围,并阐明了这些蛋白的表达和定位。