Center for Pharmaceutical Biotechnology, University of Illinois at Chicago, Chicago, IL 60607, USA.
Proteomics. 2010 Nov;10(22):4098-116. doi: 10.1002/pmic.201000210.
Phagosomal proteome characterization has contributed significantly to the understanding of host-pathogen interaction and the mechanism of infectious diseases caused by intracellular bacteria. The latex bead-containing phagosome has been widely used as a model system to study phagosomal proteomes at a global level. In contrast, the study of bacteria-containing phagosomes at a similar level has just begun. A number of intracellular microbial species are studied for their proteomes during the invasion of a host, providing insight into their metabolic adaptation in host cells and interaction with host-cell antimicrobial environments. In this review, we attempt to summarize the most recent advancements in the proteomic study of microbial phagosomes, especially those originating from mouse or human cells. We also briefly describe the proteomics of latex bead-containing phagosomes because they are often used as model phagosomes for study. We provide descriptions on major biological and technological components in phagosomal proteome studies. We also discuss the role of phagosomal proteome study in the broader horizon of systems biology and the technological challenges in phagosomal proteome characterization.
噬菌体内蛋白质组学的研究对理解宿主-病原体相互作用和细胞内细菌引起的传染病的机制有重要贡献。含乳胶珠的吞噬体已被广泛用作研究吞噬体蛋白质组的整体水平的模型系统。相比之下,对类似水平的含细菌吞噬体的研究才刚刚开始。许多细胞内微生物物种在入侵宿主时对其蛋白质组进行研究,深入了解它们在宿主细胞中的代谢适应和与宿主细胞抗菌环境的相互作用。在这篇综述中,我们试图总结微生物吞噬体蛋白质组学研究的最新进展,特别是那些源自小鼠或人类细胞的研究。我们还简要描述了含乳胶珠的吞噬体的蛋白质组学,因为它们通常被用作研究的模型吞噬体。我们提供了关于噬菌体内蛋白质组学研究的主要生物学和技术组成部分的描述。我们还讨论了噬菌体内蛋白质组学研究在系统生物学更广泛的视野中的作用以及噬菌体内蛋白质组学特征描述的技术挑战。