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Detection of bioorthogonal groups by correlative light and electron microscopy allows imaging of degraded bacteria in phagocytes

机译:通过相关光和电子显微镜检测生物正交基团,可以对吞噬细胞中降解的细菌进行成像

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摘要

The interaction between parasites and phagocytic immune cells is a key inter-species interaction in biology. Normally, phagocytosis results in the killing of invaders, but obligate intracellular parasites hijack the pathway to ensure their survival and replication. The in situ study of these parasites in the phagocytic pathway is very difficult, as genetic modification is often complicated and, if successful, only allows the tracking of pathogen phagocytosis up until the degradation of the engineered reporter constructs. Here we combine bioorthogonal chemistry with correlative light-electron microscopy (CLEM) to follow bacterial processing in the phagolysosomal system. Labelled bacteria are produced using bioorthogonal non-canonical amino tagging (BONCAT), precluding the need for any genetic modification. The bacterial proteome - even during degradation - was then visualised using a novel CLEM-based approach. This allowed us to obtain high resolution information about the subcellular location of the degrading bacteria, even after the proteolytic degradation of reporter constructs. To further explore the potential of CLEM-based imaging of bioorthogonal functionalities, azide-labelled glycans were imaged by this same approach, as well as active-subpopulations of enzymes using a 2-step activity-based protein profiling strategy.
机译:寄生虫与吞噬免疫细胞之间的相互作用是生物学中的关键物种间相互作用。通常,吞噬作用会杀死入侵者,但专一的细胞内寄生虫会劫持该途径以确保其存活和复制。在吞噬途径中对这些寄生虫进行原位研究非常困难,因为遗传修饰通常很复杂,如果成功,则只能追踪病原体的吞噬作用,直到工程化的报告基因构建物降解为止。在这里,我们将生物正交化学与相关的光电子显微镜(CLEM)相结合,以追踪吞噬溶酶体系统中的细菌加工过程。标记细菌是使用生物正交非规范氨基标签(BONCAT)产生的,无需进行任何基因修饰。然后使用一种新颖的基于CLEM的方法可视化细菌蛋白质组-甚至在降解过程中。这使我们可以获得有关降解细菌亚细胞位置的高分辨率信息,即使在报告基因构建体发生蛋白水解后也是如此。为了进一步探索基于CLEM的生物正交功能成像的潜力,使用相同的方法,使用基于2步活性的蛋白质谱分析策略,对叠氮化物标记的聚糖以及酶的活性亚群进行成像。

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