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The Breadth and Molecular Basis of Hcp-Driven Type VI Secretion System Effector Delivery

机译:HCP驱动型VI分泌系统效应器递送的宽度和分子基础

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ABSTRACT The type VI secretion system (T6SS) is a bacterial nanoscale weapon that delivers toxins into prey ranging from bacteria and fungi to animal hosts. The cytosolic contractile sheath of the system wraps around stacked hexameric rings of Hcp proteins, which form an inner tube. At the tip of this tube is a puncturing device comprising a trimeric VgrG topped by a monomeric PAAR protein. The number of toxins a single system delivers per firing event remains unknown, since effectors can be loaded on diverse sites of the T6SS apparatus, notably the inner tube and the puncturing device. Each VgrG or PAAR can bind one effector, and additional effector cargoes can be carried in the Hcp ring lumen. While many VgrG- and PAAR-bound toxins have been characterized, to date, very few Hcp-bound effectors are known. Here, we used 3 known Pseudomonas aeruginosa Hcp proteins (Hcp1 to -3), each of which associates with one of the three T6SSs in this organism (H1-T6SS, H2-T6SS, and H3-T6SS), to perform in vivo pulldown assays. We confirmed the known interactions of Hcp1 with Tse1 to -4, further copurified a Hcp1-Tse4 complex, and identified potential novel Hcp1-bound effectors. Moreover, we demonstrated that Hcp2 and Hcp3 can shuttle T6SS cargoes toxic to Escherichia coli . Finally, we used a Tse1-Bla chimera to probe the loading strategy for Hcp passengers and found that while large effectors can be loaded onto Hcp, the formed complex jams the system, abrogating T6SS function.
机译:摘要VI型分泌系统(T6SS)是一种细菌纳米级武器,将毒素送入从细菌和真菌到动物宿主的猎物。系统的细胞骨收缩鞘周围缠绕在HCP蛋白的堆叠六偏角环周围,形成内管。在该管的尖端,是一种穿孔装置,其包含由单体Paar蛋白冠的三聚体VGRG。单个系统的毒素数量每次射击事件提供仍然未知,因为效果可以在T6SS设备的不同地点上装载,特别是内管和穿孔装置。每个vgrg或paar可以粘合一个效应器,并且可以在HCP环形腔中携带另外的效应性货物。迄今为止,虽然许多vGRG-和泊陀毒素已经表征了很少的HCP束缚效应器。在此,我们使用了3个已知的假单胞菌铜绿假单胞菌HCP蛋白(HCP1至-3),每个蛋白质(HCP1至-3)都与该生物体(H1-T6SS,H2-T6SS和H3-T6SS)中的三个T6S中的一种相关联,以便在Vivo Pullown中执行测定。我们证实了HCP1与TSE1至-4的已知相互作用,进一步为HCP1-TSE4复合物,并确定了潜在的新型HCP1束缚效应。此外,我们展示了HCP2和HCP3可以将T6SS货物穿梭于大肠杆菌。最后,我们使用了TSE1-BLA Chimera来探讨了HCP乘客的负载策略,发现虽然可以将大量效果件加载到HCP上,所形成的复杂的堵塞系统,消除T6SS功能。

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