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Rab9 GTP酶是1型人类免疫缺陷病毒、丝状病毒和麻疹病毒复制所必需的。

Rab9 GTPase is required for replication of human immunodeficiency virus type 1, filoviruses, and measles virus.

作者信息

Murray James L, Mavrakis Manos, McDonald Natalie J, Yilla Mamadi, Sheng Jinsong, Bellini William J, Zhao Lijun, Le Doux Joseph M, Shaw Michael W, Luo Chi-Cheng, Lippincott-Schwartz Jennifer, Sanchez Anthony, Rubin Donald H, Hodge Thomas W

机构信息

National Center for HIV, STD, and TB Prevention, Centers for Disease Control and Prevention, Atlanta, Georgia 30333, USA.

出版信息

J Virol. 2005 Sep;79(18):11742-51. doi: 10.1128/JVI.79.18.11742-11751.2005.

Abstract

Rab proteins and their effectors facilitate vesicular transport by tethering donor vesicles to their respective target membranes. By using gene trap insertional mutagenesis, we identified Rab9, which mediates late-endosome-to-trans-Golgi-network trafficking, among several candidate host genes whose disruption allowed the survival of Marburg virus-infected cells, suggesting that Rab9 is utilized in Marburg replication. Although Rab9 has not been implicated in human immunodeficiency virus (HIV) replication, previous reports suggested that the late endosome is an initiation site for HIV assembly and that TIP47-dependent trafficking out of the late endosome to the trans-Golgi network facilitates the sorting of HIV Env into virions budding at the plasma membrane. We examined the role of Rab9 in the life cycles of HIV and several unrelated viruses, using small interfering RNA (siRNA) to silence Rab9 expression before viral infection. Silencing Rab9 expression dramatically inhibited HIV replication, as did silencing the host genes encoding TIP47, p40, and PIKfyve, which also facilitate late-endosome-to-trans-Golgi vesicular transport. In addition, silencing studies revealed that HIV replication was dependent on the expression of Rab11A, which mediates trans-Golgi-to-plasma-membrane transport, and that increased HIV Gag was sequestered in a CD63+ endocytic compartment in a cell line stably expressing Rab9 siRNA. Replication of the enveloped Ebola, Marburg, and measles viruses was inhibited with Rab9 siRNA, although the non-enveloped reovirus was insensitive to Rab9 silencing. These results suggest that Rab9 is an important cellular target for inhibiting diverse viruses and help to define a late-endosome-to-plasma-membrane vesicular transport pathway important in viral assembly.

摘要

Rab蛋白及其效应分子通过将供体囊泡拴系到各自的靶膜上促进囊泡运输。通过基因陷阱插入诱变,我们在几个候选宿主基因中鉴定出介导晚期内体到反式高尔基体网络运输的Rab9,其破坏能使感染马尔堡病毒的细胞存活,这表明Rab9参与马尔堡病毒复制。尽管Rab9尚未被证明与人类免疫缺陷病毒(HIV)复制有关,但先前的报道表明晚期内体是HIV组装的起始位点,且TIP47依赖的从晚期内体到反式高尔基体网络的运输有助于将HIV Env分选到在质膜出芽的病毒颗粒中。我们使用小干扰RNA(siRNA)在病毒感染前沉默Rab9表达,研究了Rab9在HIV及几种无关病毒生命周期中的作用。沉默Rab9表达显著抑制了HIV复制,沉默编码TIP47、p40和PIKfyve的宿主基因也有同样效果,这些基因也促进晚期内体到反式高尔基体的囊泡运输。此外,沉默研究表明HIV复制依赖于介导反式高尔基体到质膜运输的Rab11A的表达,且在稳定表达Rab9 siRNA的细胞系中,增加的HIV Gag被隔离在CD63 + 内吞区室中。Rab9 siRNA抑制了包膜型埃博拉病毒、马尔堡病毒和麻疹病毒的复制,尽管无包膜的呼肠孤病毒对Rab9沉默不敏感。这些结果表明Rab9是抑制多种病毒的重要细胞靶点,并有助于确定在病毒组装中起重要作用的晚期内体到质膜的囊泡运输途径。

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