Matos Ana Luísa, Curto Pedro, Simões Isaura
CNC-Center for Neuroscience and Cell Biology, University of Coimbra, 3004-504 Coimbra, Portugal.
IIIUC-Institute of Interdisciplinary Research, University of Coimbra, 3004-504 Coimbra, Portugal.
Trop Med Infect Dis. 2022 Feb 19;7(2):32. doi: 10.3390/tropicalmed7020032.
The order Rickettsiales includes species that cause a range of human diseases such as human granulocytic anaplasmosis (), human monocytic ehrlichiosis (), scrub typhus (), epidemic typhus (), murine typhus (), Mediterranean spotted fever (), or Rocky Mountain spotted fever (). These diseases are gaining a new momentum given their resurgence patterns and geographical expansion due to the overall rise in temperature and other human-induced pressure, thereby remaining a major public health concern. As obligate intracellular bacteria, Rickettsiales are characterized by their small genome sizes due to reductive evolution. Many pathogens employ moonlighting/multitasking proteins as virulence factors to interfere with multiple cellular processes, in different compartments, at different times during infection, augmenting their virulence. The utilization of this multitasking phenomenon by Rickettsiales as a strategy to maximize the use of their reduced protein repertoire is an emerging theme. Here, we provide an overview of the role of various moonlighting proteins in the pathogenicity of these species. Despite the challenges that lie ahead to determine the multiple potential faces of every single protein in Rickettsiales, the available examples anticipate this multifunctionality as an essential and intrinsic feature of these obligates and should be integrated into available moonlighting repositories.
立克次氏体目包括一系列可导致人类疾病的物种,如人粒细胞无形体病、人单核细胞埃立克体病、恙虫病、流行性斑疹伤寒、鼠型斑疹伤寒、地中海斑疹热或落基山斑疹热。鉴于这些疾病因气温总体上升和其他人为压力而出现的复发模式和地理扩张,它们正呈现出新的势头,因此仍然是主要的公共卫生问题。作为专性细胞内细菌,立克次氏体目由于进化简化,其基因组较小。许多病原体利用兼职/多功能蛋白作为毒力因子,在感染过程中的不同时间、不同区室干扰多种细胞过程,增强其毒力。立克次氏体目利用这种多功能现象作为一种策略,以最大限度地利用其减少的蛋白质库,这是一个新出现的主题。在此,我们概述了各种兼职蛋白在这些物种致病性中的作用。尽管在确定立克次氏体目中每一种蛋白质的多种潜在特性方面仍面临挑战,但现有的例子表明这种多功能性是这些专性细菌的一个基本和固有特征,应纳入现有的兼职蛋白库中。