Rofe Adam P, Davis Luther J, Whittingham Jean L, Latimer-Bowman Elizabeth C, Wilkinson Anthony J, Pryor Paul R
Department of Biology, Wentworth Way, University of York, York, UK.
Cambridge Institute for Medical Research and Department of Clinical Biochemistry, Addenbrooke's Hospital, University of Cambridge, Cambridge.
Microbiologyopen. 2017 Apr;6(2). doi: 10.1002/mbo3.416. Epub 2016 Oct 19.
Rhodococcus equi (R. equi) is an important pulmonary pathogen in foals that often leads to the death of the horse. The bacterium harbors a virulence plasmid that encodes numerous virulence-associated proteins (Vaps) including VapA that is essential for intracellular survival inside macrophages. However, little is known about the precise function of VapA. Here, we demonstrate that VapA causes perturbation to late endocytic organelles with swollen endolysosome organelles having reduced Cathepsin B activity and an accumulation of LBPA, LC3 and Rab7. The data are indicative of a loss of endolysosomal function, which leads cells to upregulate lysosome biogenesis to compensate for the loss of functional endolysosomes. Although there is a high degree of homology of the core region of VapA to other Vap proteins, only the highly conserved core region of VapA, and not VapD of VapG, gives the observed effects on endolysosomes. This is the first demonstration of how VapA works and implies that VapA aids R. equi survival by reducing the impact of lysosomes on phagocytosed bacteria.
马红球菌(R. equi)是幼驹重要的肺部病原体,常导致马匹死亡。该细菌携带一种毒力质粒,编码多种与毒力相关的蛋白质(Vaps),包括对巨噬细胞内生存至关重要的VapA。然而,关于VapA的确切功能知之甚少。在此,我们证明VapA会导致晚期内吞细胞器紊乱,内溶酶体细胞器肿胀,组织蛋白酶B活性降低,且溶血磷脂酸(LBPA)、微管相关蛋白1轻链3(LC3)和Ras相关蛋白7(Rab7)积聚。这些数据表明内溶酶体功能丧失,导致细胞上调溶酶体生物合成以补偿功能性内溶酶体的损失。尽管VapA的核心区域与其他Vap蛋白有高度同源性,但只有VapA高度保守的核心区域,而非VapG的VapD,会对内溶酶体产生上述影响。这首次证明了VapA的作用方式,意味着VapA通过减少溶酶体对吞噬细菌的影响来帮助马红球菌生存。