首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Host BAG3 Is Degraded by Pseudorabies Virus pUL56 C-Terminal 181L-185L and Plays a Negative Regulation Role during Viral Lytic Infection
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Host BAG3 Is Degraded by Pseudorabies Virus pUL56 C-Terminal 181L-185L and Plays a Negative Regulation Role during Viral Lytic Infection

机译:宿主BAG3被伪狂犬病病毒pUL56 C终端181L-185L降解并在病毒性溶菌感染中起负调控作用

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摘要

Bcl2-associated athanogene (BAG) 3, which is a chaperone-mediated selective autophagy protein, plays a pivotal role in modulating the life cycle of a wide variety of viruses. Both positive and negative modulations of viruses by BAG3 were reported. However, the effects of BAG3 on pseudorabies virus (PRV) remain unknown. To investigate whether BAG3 could modulate the PRV life cycle during a lytic infection, we first identified PRV protein UL56 (pUL56) as a novel BAG3 interactor by co-immunoprecipitation and co-localization analyses. The overexpression of pUL56 induced a significant degradation of BAG3 at protein level via the lysosome pathway. The C-terminal mutations of L/A, L/A, or L/A- L/A in pUL56 resulted in a deficiency in pUL56-induced BAG3 degradation. In addition, the pUL56 C-terminal mutants that lost Golgi retention abrogated pUL56-induced BAG3 degradation, which indicates a Golgi retention-dependent manner. Strikingly, BAG3 was not observed to be degraded in either wild-type or UL56-deleted PRV infected cells as compared to mock infected ones, whereas the additional two adjacent BAG3 cleaved products were found in the infected cells in a species-specific manner. Overexpression of BAG3 significantly suppressed PRV proliferation, while knockdown of BAG3 resulted in increased viral yields in HEK293T cells. Thus, these data indicated a negative regulation role of BAG3 during PRV lytic infection. Collectively, our findings revealed a novel molecular mechanism on host protein degradation induced by PRV pUL56. Moreover, we identified BAG3 as a host restricted protein during PRV lytic infection in cells.
机译:Bcl2相关的致癌基因(BAG)3是伴侣介导的选择性自噬蛋白,在调节多种病毒的生命周期中起着关键作用。报道了BAG3对病毒的正向和负向调节。但是,BAG3对伪狂犬病病毒(PRV)的影响仍然未知。为了研究BAG3是否能在溶菌感染期间调节PRV的生命周期,我们首先通过免疫共沉淀和共定位分析将PRV蛋白UL56(pUL56)鉴定为新型BAG3相互作用子。 pUL56的过表达通过溶酶体途径在蛋白水平上诱导了BAG3的显着降解。 pUL56中L / A,L / A或L / A-L / A的C端突变导致pUL56诱导的BAG3降解不足。此外,丢失高尔基体的pUL56 C端突变体废除了了pUL56诱导的BAG3降解,这表明了高尔基体依赖的方式。令人惊讶的是,与模拟感染的相比,在野生型或UL56缺失的PRV感染的细胞中均未观察到BAG3降解,而在感染的细胞中又以物种特异性方式发现了另外两个相邻的BAG3裂解产物。 BAG3的过表达显着抑制PRV增殖,而敲低BAG3则导致HEK293T细胞的病毒产量增加。因此,这些数据表明BAG3在PRV溶解性感染期间具有负调节作用。总的来说,我们的发现揭示了由PRV pUL56诱导的宿主蛋白降解的新分子机制。此外,我们在细胞中PRV裂解感染期间将BAG3鉴定为宿主限制性蛋白。

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