疏螺旋体和宿主的相互作用:一个纠结的故事

M. Bhide
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摘要

在分子水平上了解宿主-病原体相互作用对了解疾病的发病机制、预防和治疗至关重要。伯氏疏螺旋体是一种典型的神经侵袭性病原体,具有抗原蛋白剧烈变化、补体调节蛋白结合、抗原变异等多种免疫逃避机制。提示疏螺旋体可能通过结合补体调节蛋白如因子H、玻璃体连接蛋白、C4BP、CD59等多种途径逃避宿主补体系统。这些机制的振幅,其病原体种类依赖性差异,以及双方(宿主和病原体)相互作用蛋白的表征将在VAS报告中介绍。伯氏疏螺旋体也能够侵入隐藏在免疫特权部位-中枢神经系统的中枢神经系统(CNS)。为此,它必须穿过血脑屏障(BBB)。与许多其他入侵中枢神经系统的病原体一样,这种生物的血脑屏障穿越机制仍在进行研究。我们十年的研究表明疏螺旋体渗透血脑屏障的细胞旁机制。病原体的细胞旁渗透需要多种蛋白:病原体表面蛋白与内皮细胞之间的蛋白相互作用。我在VAS演讲的第二部分将专注于伯氏疏螺旋体调节脑微血管内皮细胞穿过血脑屏障的细胞信号事件的机制。本报告还将简要介绍基因组学和蛋白质组学中用于了解疏螺旋体神经侵入性和补体逃避机制的几种最新技术。我希望博士们能够利用在VAS中展示的实验管道,并成功地应用到他们的研究中
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Borrelia and host interaction: a tangled tale
Knowledge of host-pathogen interactions at molecular level is crucial for understanding of pathogenesis, disease prevention and cure. Here Borrelia is presented as a model neuroinvasive pathogen which  employs vast immune evasion mechanisms like - drastic change in antigenic proteins, complement regulatory protein binding, antigenic variation etc. It is proposed that Borrelia may employ multiple strategies to evade host's complement system by binding complement regulatory proteins like factor H, vitronectin, C4BP and CD59. Amplitude of these mechanisms, their pathogen species dependent disparity, and characterization of interacting proteins from both sides (host and pathogen) will be presented during VAS presentations. Borrelia is also capable of invading central nervous system (CNS) in hide in the immune privileged site – the CNS. To do so it must cross the blood brain barrier (BBB). The mechanisms of the BBB crossing of this organism, like many of the other CNS invading pathogens, are still subject of on-going research. Our decade of research indicate the paracellular mechanism of the BBB penetration of Borrelia . Paracellular penetration of pathogen needs multiple protein:protein interactions between pathogen surface proteins and endothelial cells. The second part of my presentation in VAS will be dedicated to mechanisms employed by Borrelia to modulate cell signaling events in brain microvascular endothelial cells to cross the BBB. This presentation will also give sneak peak of several state-of-the-art technologies in  genomics and proteomic used to understand the mechanisms of neuroinvasive and complement evasion by Borrelia . I hope that doctoral fellows will take advantage of the experimental pipeline that will be presented in VAS and apply successfully in their research
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