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Architecture and host interface of environmental chlamydiae revealed by electron cryotomography

机译:电子冷冻断层扫描显示环境衣原体的结构和宿主界面

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Chlamydiae comprise important pathogenic and symbiotic bacteria that alternate between morphologically and physiologically different life stages during their developmental cycle. Using electron cryotomography, we characterize the ultrastructure of the developmental stages of three environmental chlamydiae: Parachlamydia acanthamoebae, Protochlamydia amoebophila and Simkania negevensis.We show that chemical fixation and dehydration alter the cell shape of Parachlamydia and that the crescent body is not a developmental stage, but an artefact of conventional electron microscopy. We further reveal type III secretion systems of environmental chlamydiae at macromolecular resolution and find support for a chlamydial needle-tip protein. Imaging bacteria inside their host cells by cryotomography for the first time, we observe marked differences in inclusion morphology and development as well as host organelle recruitment between the three chlamydial organisms, with Simkania inclusions being tightly enveloped by the host endoplasmic reticulum. The study demonstrates the power of electron cryotomography to reveal structural details of bacteria–host interactions that are not accessible using traditional methods.
机译:衣原体包含重要的致病和共生细菌,它们在其发育周期中在形态和生理上不同的生命阶段之间交替。利用电子冷冻层析技术,我们表征了三种环境衣原体的发育阶段的超微结构:衣原体衣原体,变形衣原体和嗜血杆菌,我们证明化学固定和脱水改变了衣原体的细胞形状,而新月体不是发育阶段,但是是传统电子显微镜的伪像。我们进一步揭示了环境衣原体在大分子分辨率下的III型分泌系统,并发现了衣原体针尖蛋白的支持。首次通过冷冻成像技术对其宿主细胞内的细菌进行成像,我们观察到三种衣原体之间在包涵体形态和发育以及宿主细胞器募集方面存在显着差异,其中Simkania包涵体被宿主内质网紧密包裹。这项研究证明了电子冷冻层析技术能够揭示细菌与宿主之间相互作用的结构细节,而这是传统方法无法获得的。

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