Vieira Otilia V, Harrison Rene E, Scott Cameron C, Stenmark Harald, Alexander David, Liu Jun, Gruenberg Jean, Schreiber Alan D, Grinstein Sergio
Cell Biology Program, Hospital for Sick Children, and Department of Biochemistry, University of Toronto, Ontario M5G 1X8, Canada.
Mol Cell Biol. 2004 May;24(10):4593-604. doi: 10.1128/MCB.24.10.4593-4604.2004.
Pathogenic mycobacteria survive within macrophages by precluding the fusion of phagosomes with late endosomes or lysosomes. Because the molecular determinants of normal phagolysosome formation are poorly understood, the sites targeted by mycobacteria remain unidentified. We found that Hrs, an adaptor molecule involved in protein sorting, associates with phagosomes prior to their fusion with late endosomes or lysosomes. Recruitment of Hrs required the interaction of its FYVE domain with phagosomal phosphatidylinositol 3-phosphate, but two other attachment sites were additionally involved. Depletion of Hrs by use of small interfering RNA impaired phagosomal maturation, preventing the acquisition of lysobisphosphatidic acid and reducing luminal acidification. As a result, the maturation of phagosomes formed in Hrs-depleted cells was arrested at an early stage, characterized by the acquisition and retention of sorting endosomal markers. This phenotype is strikingly similar to that reported to occur in phagosomes of cells infected by mycobacteria. We therefore tested whether Hrs is recruited to phagosomes containing mycobacteria. Hrs associated readily with phagosomes containing inert particles but poorly with mycobacterial phagosomes. Moreover, Hrs was found more frequently in phagosomes containing avirulent Mycobacterium smegmatis than in phagosomes with the more virulent Mycobacterium marinum. These findings suggest that the inability to recruit Hrs contributes to the arrest of phagosomal maturation induced by pathogenic mycobacteria.
致病性分枝杆菌通过阻止吞噬体与晚期内体或溶酶体融合而在巨噬细胞内存活。由于对正常吞噬溶酶体形成的分子决定因素了解甚少,分枝杆菌靶向的位点仍未明确。我们发现,Hrs是一种参与蛋白质分选的衔接分子,在吞噬体与晚期内体或溶酶体融合之前就与吞噬体结合。Hrs的募集需要其FYVE结构域与吞噬体磷脂酰肌醇3 - 磷酸相互作用,但另外还涉及两个其他附着位点。使用小干扰RNA耗尽Hrs会损害吞噬体成熟,阻止溶血双磷脂酸的获得并降低腔内酸化。结果,在耗尽Hrs的细胞中形成的吞噬体成熟在早期阶段停滞,其特征是分选内体标记物的获得和保留。这种表型与报道的分枝杆菌感染细胞的吞噬体中出现的表型惊人地相似。因此,我们测试了Hrs是否被募集到含有分枝杆菌的吞噬体中。Hrs很容易与含有惰性颗粒的吞噬体结合,但与分枝杆菌吞噬体结合较差。此外,在含有无毒耻垢分枝杆菌的吞噬体中比在含有毒性更强的海分枝杆菌的吞噬体中更频繁地发现Hrs。这些发现表明,无法募集Hrs导致致病性分枝杆菌诱导的吞噬体成熟停滞。