首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Suppression of production of baboon endogenous virus by dominant negative mutants of cellular factors involved in multivesicular body sorting pathway
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Suppression of production of baboon endogenous virus by dominant negative mutants of cellular factors involved in multivesicular body sorting pathway

机译:参与多囊泡体分选途径的细胞因子显性负突变体抑制狒狒内源性病毒的产生

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摘要

Baboon endogenous virus (BaEV) is an infectious endogenous gammaretrovirus isolated from a baboon placenta. BaEV-related sequences have been identified in both Old World monkeys and African apes, but not in humans or Asian apes. Recently, it was reported that BaEV-like particles were produced from Vero cells derived from African green monkeys by chemical induction, and thus BaEV-like particles may contaminate biological products manufactured using Vero cells. In this study, we constructed an infectious molecular clone of BaEV strain M7. We found two putative L-domain motifs, PPPY and PSAP, in the pp15 region of Gag. To examine the function of the L-domain motifs, we conducted virus budding assay using L-domain motif mutants. We revealed that the PPPY motif, but not the PSAP motif, plays a major role as the L-domain in BaEV budding. We also demonstrated that Vps4A/B are involved in BaEV budding. These data suggest that BaEV Gag recruits the cellular endosomal sorting complex required for transport (ESCRT) machinery through the interaction of the PPPY L-domain with cellular factors. These data will be useful for controlling contamination of BaEV-like particles in biological products in the future. (C) 2014 Elsevier B.V. All rights reserved.
机译:狒狒内源性病毒(BaEV)是一种从狒狒胎盘中分离出来的传染性内源性γ逆转录病毒。在旧世界的猴子和非洲的猿猴中都发现了与BaEV相关的序列,但在人类或亚洲的猿猴中却没有。最近,有报道说BaEV样颗粒是通过化学诱导从非洲绿猴衍生的Vero细胞中产生的,因此BaEV样颗粒可能会污染使用Vero细胞生产的生物产品。在这项研究中,我们构建了BaEV菌株M7的感染性分子克隆。我们在Gag的pp15区发现了两个假定的L结构域基序PPPY和PSAP。为了检查L-结构域基序的功能,我们使用L-结构域基序突变体进行了病毒出芽测定。我们揭示了PPPY基元,而不是PSAP基元,在BaEV萌芽中作为L结构域起着重要作用。我们还证明了Vps4A / B参与了BaEV萌芽。这些数据表明,BaEV Gag通过PPPY L结构域与细胞因子的相互作用募集了运输(ESCRT)机械所需的细胞内体分选复合物。这些数据对于将来控制生物产品中BaEV样颗粒的污染将是有用的。 (C)2014 Elsevier B.V.保留所有权利。

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