首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Agrobacterium-delivered virulence protein VirE2 is trafficked inside host cells via a myosin XI-K–powered ER/actin network
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Agrobacterium-delivered virulence protein VirE2 is trafficked inside host cells via a myosin XI-K–powered ER/actin network

机译:农杆菌传递的毒力蛋白VirE2通过肌球蛋白XI-K驱动的ER /肌动蛋白网络在宿主细胞内运输

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摘要

Agrobacterium tumefaciens causes crown gall tumors on various plants by delivering transferred DNA (T-DNA) and virulence proteins into host plant cells. Under laboratory conditions, the bacterium is widely used as a vector to genetically modify a wide range of organisms, including plants, yeasts, fungi, and algae. Various studies suggest that T-DNA is protected inside host cells by VirE2, one of the virulence proteins. However, it is not clear how Agrobacterium-delivered factors are trafficked through the cytoplasm. In this study, we monitored the movement of Agrobacterium-delivered VirE2 inside plant cells by using a split-GFP approach in real time. Agrobacterium-delivered VirE2 trafficked via the endoplasmic reticulum (ER) and F-actin network inside plant cells. During this process, VirE2 was aggregated as filamentous structures and was present on the cytosolic side of the ER. VirE2 movement was powered by myosin XI-K. Thus, exogenously produced and delivered VirE2 protein can use the endogenous host ER/actin network for movement inside host cells. The A. tumefaciens pathogen hijacks the conserved host infrastructure for virulence trafficking. Well-conserved infrastructure may be useful for Agrobacterium to target a wide range of recipient cells and achieve a high efficiency of transformation.
机译:根癌农杆菌通过将转移的DNA(T-DNA)和毒力蛋白传递到宿主植物细胞中,从而在各种植物上引起冠状tumor瘤。在实验室条件下,该细菌被广泛用作载体,对包括植物,酵母,真菌和藻类在内的多种生物进行遗传修饰。各种研究表明,T-DNA在宿主细胞内受到VirE2(一种毒性蛋白)的保护。但是,尚不清楚如何将农杆菌传递因子通过细胞质进行运输。在这项研究中,我们通过使用split-GFP方法实时监测了农杆菌传递的VirE2在植物细胞内的运动。农杆菌传递的VirE2通过植物细胞内部的内质网(ER)和F-肌动蛋白网络运输。在此过程中,VirE2聚集为丝状结构,并存在于ER的胞质侧。 VirE2运动由肌球蛋白XI-K驱动。因此,外源产生和递送的VirE2蛋白可以使用内源宿主ER /肌动蛋白网络在宿主细胞内移动。根癌土壤杆菌病原体劫持了保守的宿主基础设施,以进行毒力运输。保守的基础设施可能有助于农杆菌靶向广泛的受体细胞并实现高转化效率。

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