Department of Microbiology and Immunology, School of Medicine, University of North Carolina, Chapel Hill, North Carolina, USA.
J Bacteriol. 2013 Oct;195(19):4456-65. doi: 10.1128/JB.00630-13. Epub 2013 Aug 2.
All bacteria use the conserved Sec pathway to transport proteins across the cytoplasmic membrane, with the SecA ATPase playing a central role in the process. Mycobacteria are part of a small group of bacteria that have two SecA proteins: the canonical SecA (SecA1) and a second, specialized SecA (SecA2). The SecA2-dependent pathway exports a small subset of proteins and is required for Mycobacterium tuberculosis virulence. The mechanism by which SecA2 drives export of proteins across the cytoplasmic membrane remains poorly understood. Here we performed suppressor analysis on a dominant negative secA2 mutant (secA2 K129R) of the model mycobacterium Mycobacterium smegmatis to better understand the pathway used by SecA2 to export proteins. Two extragenic suppressor mutations were identified as mapping to the promoter region of secY, which encodes the central component of the canonical Sec export channel. These suppressor mutations increased secY expression, and this effect was sufficient to alleviate the secA2 K129R phenotype. We also discovered that the level of SecY protein was greatly diminished in the secA2 K129R mutant, but at least partially restored in the suppressors. Furthermore, the level of SecY in a suppressor strongly correlated with the degree of suppression. Our findings reveal a detrimental effect of SecA2 K129R on SecY, arguing for an integrated system in which SecA2 works with SecY and the canonical Sec translocase to export proteins.
所有细菌都使用保守的 Sec 途径将蛋白质跨细胞质膜运输,SecA ATP 酶在该过程中起着核心作用。分枝杆菌属于一小部分具有两种 SecA 蛋白的细菌:典型的 SecA(SecA1)和第二种特殊的 SecA(SecA2)。SecA2 依赖的途径可输出一小部分蛋白质,并且是结核分枝杆菌毒力所必需的。SecA2 驱动蛋白质跨细胞质膜输出的机制仍知之甚少。在这里,我们对模型分枝杆菌耻垢分枝杆菌的显性负性 secA2 突变体(secA2 K129R)进行了抑制因子分析,以更好地了解 SecA2 用于输出蛋白质的途径。鉴定出两个外基因抑制突变,它们映射到编码典型 Sec 出口通道中央组件的 secY 启动子区域。这些抑制突变增加了 secY 的表达,并且这种效应足以缓解 secA2 K129R 表型。我们还发现 secA2 K129R 突变体中的 SecY 蛋白水平大大降低,但在抑制剂中至少部分恢复。此外,抑制剂中 SecY 的水平与抑制程度强烈相关。我们的发现揭示了 SecA2 K129R 对 SecY 的有害影响,这表明 SecA2 与 SecY 和典型的 Sec 转运蛋白协同工作以输出蛋白质的综合系统。