Centre for Membrane Interactions and Dynamics, Department of Biomedical Sciences, University of Sheffield, Firth Court, Western Bank, Sheffield, United Kingdom.
Bateson Centre, University of Sheffield, Firth Court, Western Bank, Sheffield, United Kingdom.
PLoS Pathog. 2019 Feb 7;15(2):e1007551. doi: 10.1371/journal.ppat.1007551. eCollection 2019 Feb.
By engulfing potentially harmful microbes, professional phagocytes are continually at risk from intracellular pathogens. To avoid becoming infected, the host must kill pathogens in the phagosome before they can escape or establish a survival niche. Here, we analyse the role of the phosphoinositide (PI) 5-kinase PIKfyve in phagosome maturation and killing, using the amoeba and model phagocyte Dictyostelium discoideum. PIKfyve plays important but poorly understood roles in vesicular trafficking by catalysing formation of the lipids phosphatidylinositol (3,5)-bisphosphate (PI(3,5)2) and phosphatidylinositol-5-phosphate (PI(5)P). Here we show that its activity is essential during early phagosome maturation in Dictyostelium. Disruption of PIKfyve inhibited delivery of both the vacuolar V-ATPase and proteases, dramatically reducing the ability of cells to acidify newly formed phagosomes and digest their contents. Consequently, PIKfyve- cells were unable to generate an effective antimicrobial environment and efficiently kill captured bacteria. Moreover, we demonstrate that cells lacking PIKfyve are more susceptible to infection by the intracellular pathogen Legionella pneumophila. We conclude that PIKfyve-catalysed phosphoinositide production plays a crucial and general role in ensuring early phagosomal maturation, protecting host cells from diverse pathogenic microbes.
通过吞噬潜在的有害微生物,专业的吞噬细胞不断面临细胞内病原体的风险。为了避免感染,宿主必须在吞噬体中的病原体逃逸或建立生存小生境之前将其杀死。在这里,我们使用变形虫和模型吞噬细胞 Dictyostelium discoideum 分析了磷酸肌醇(PI)5-激酶 PIKfyve 在吞噬体成熟和杀伤中的作用。PIKfyve 通过催化磷脂酰肌醇(3,5)-二磷酸(PI(3,5)2)和磷脂酰肌醇-5-磷酸(PI(5)P)的形成,在囊泡运输中发挥重要但尚未完全理解的作用。在这里,我们表明其活性在变形虫的早期吞噬体成熟过程中是必不可少的。PIKfyve 的破坏抑制了液泡 V-ATPase 和蛋白酶的传递,极大地降低了细胞酸化新形成的吞噬体和消化其内容物的能力。因此,PIKfyve-细胞无法产生有效的抗菌环境并有效地杀死捕获的细菌。此外,我们证明缺乏 PIKfyve 的细胞更容易感染细胞内病原体嗜肺军团菌。我们得出结论,PIKfyve 催化的磷酸肌醇产生在确保早期吞噬体成熟、保护宿主细胞免受多种致病微生物侵害方面发挥着关键和普遍的作用。