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Chlamydiae assemble a pathogen synapse to hijack the host endoplasmic reticulum

机译:衣原体组装病原体突触以劫持宿主内质网

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摘要

Chlamydiae are obligate intracellular bacterial pathogens that replicate within a specialised membrane-bound compartment, termed an ‘inclusion’. The inclusion membrane is a critical host-pathogen interface, yet the extent of its interaction with cellular organelles and the origin of this membrane remain poorly defined. Here we show that the host endoplasmic reticulum (ER) is specifically recruited to the inclusion, and that key rough ER (rER) proteins are enriched on and translocated into the inclusion. rER recruitment is a Chlamydia-orchestrated process that occurs independently of host trafficking. Generation of infectious progeny requires an intact ER, since ER vacuolation early during infection stalls inclusion development, whereas disruption post ER recruitment bursts the inclusion. Electron tomography and immunolabelling of Chlamydia-infected cells reveal ‘pathogen synapses’ at which ordered arrays of chlamydial type III secretion complexes connect to the inclusion membrane only at rER contact sites. Our data demonstrate a supramolecular assembly involved in pathogen hijack of a key host organelle.
机译:衣原体是专性的细胞内细菌病原体,在特定的膜结合区室中复制,称为“包涵体”。内含膜是关键的宿主-病原体界面,但其与细胞器相互作用的程度以及该膜的起源仍不清楚。在这里,我们显示宿主内质网(ER)是专门招募到包含物,并且关键的粗糙ER(rER)蛋白富集并转移到包含物中。 rER募集是衣原体精心策划的过程,独立于宿主贩运而发生。感染后代的产生需要完整的ER,因为在感染过程中早期的ER空泡使包涵体发育停滞,而ER募集后的破坏使包涵体破裂。衣原体感染细胞的电子断层扫描和免疫标记揭示了“病原体突触”,在那儿,衣原体III型分泌复合物的有序阵列仅在rER接触部位与包涵膜相连。我们的数据表明参与关键宿主细胞器的病原体劫持的超分子组装。

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