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ESCRT-0组件Hrs促进人真皮微血管内皮细胞中卡波西肉瘤相关疱疹病毒的巨胞饮作用。

ESCRT-0 Component Hrs Promotes Macropinocytosis of Kaposi's Sarcoma-Associated Herpesvirus in Human Dermal Microvascular Endothelial Cells.

作者信息

Veettil Mohanan Valiya, Kumar Binod, Ansari Mairaj Ahmed, Dutta Dipanjan, Iqbal Jawed, Gjyshi Olsi, Bottero Virginie, Chandran Bala

机构信息

H. M. Bligh Cancer Research Laboratories, Department of Microbiology and Immunology, Chicago Medical School, Rosalind Franklin University of Medicine and Science, North Chicago, Illinois, USA

H. M. Bligh Cancer Research Laboratories, Department of Microbiology and Immunology, Chicago Medical School, Rosalind Franklin University of Medicine and Science, North Chicago, Illinois, USA.

出版信息

J Virol. 2016 Mar 28;90(8):3860-3872. doi: 10.1128/JVI.02704-15. Print 2016 Apr.

Abstract

UNLABELLED

Kaposi's sarcoma-associated herpesvirus (KSHV) enters human dermal microvascular endothelial cells (HMVEC-d), its naturalin vivotarget cells, by lipid raft-dependent macropinocytosis. The internalized viral envelope fuses with the macropinocytic membrane, and released capsid is transported to the nuclear vicinity, resulting in the nuclear entry of viral DNA. The endosomal sorting complexes required for transport (ESCRT) proteins, which include ESCRT-0, -I, -II, and -III, play a central role in endosomal trafficking and sorting of internalized and ubiquitinated receptors. Here, we examined the role of ESCRT-0 component Hrs (hepatocyte growth factor-regulated tyrosine kinase substrate) in KSHV entry into HMVEC-d by macropinocytosis. Knockdown of Hrs by short hairpin RNA (shRNA) transduction resulted in significant decreases in KSHV entry and viral gene expression. Immunofluorescence analysis (IFA) and plasma membrane isolation and proximity ligation assay (PLA) demonstrated the translocation of Hrs from the cytosol to the plasma membrane of infected cells and association with α-actinin-4. In addition, infection induced the plasma membrane translocation and activation of the serine/threonine kinase ROCK1, a downstream target of the RhoA GTPase. Hrs knockdown reduced these associations, suggesting that the recruitment of ROCK1 is an Hrs-mediated event. Interaction between Hrs and ROCK1 is essential for the ROCK1-induced phosphorylation of NHE1 (Na(+)/H(+)exchanger 1), which is involved in the regulation of intracellular pH. Thus, our studies demonstrate the plasma membrane association of ESCRT protein Hrs during macropinocytosis and suggest that KSHV entry requires both Hrs- and ROCK1-dependent mechanisms and that ROCK1-mediated phosphorylation of NHE1 and pH change is an essential event required for the macropinocytosis of KSHV.

IMPORTANCE

Macropinocytosis is the major entry pathway of KSHV in human dermal microvascular endothelial cells, the natural target cells of KSHV. Although the role of ESCRT protein Hrs has been extensively studied with respect to endosomal movement and sorting of ubiquitinated proteins into lysosomes, its function in macropinocytosis is not known. In the present study, we demonstrate for the first time that upon KSHV infection, the endogenous Hrs localizes to the plasma membrane and the membrane-associated Hrs facilitates assembly of signaling molecules, macropinocytosis, and virus entry. Hrs recruits ROCK1 to the membrane, which is required for the activation of NHE1 and an increase in submembranous intracellular pH occurring during macropinocytosis. These studies demonstrate that the localization of Hrs from the cytosol to the plasma membrane is important for coupling membrane dynamics to the cytosolic signaling events during macropinocytosis of KSHV.

摘要

未标记

卡波西肉瘤相关疱疹病毒(KSHV)通过脂筏依赖性巨胞饮作用进入人真皮微血管内皮细胞(HMVEC-d),后者是其在体内的天然靶细胞。内化的病毒包膜与巨胞饮细胞膜融合,释放的衣壳被转运至细胞核附近,导致病毒DNA进入细胞核。转运所需的内体分选复合体(ESCRT)蛋白,包括ESCRT-0、-I、-II和-III,在内体运输以及内化和泛素化受体的分选过程中发挥核心作用。在此,我们研究了ESCRT-0组分肝细胞生长因子调节的酪氨酸激酶底物(Hrs)在KSHV通过巨胞饮作用进入HMVEC-d过程中的作用。通过短发夹RNA(shRNA)转导敲低Hrs导致KSHV进入和病毒基因表达显著降低。免疫荧光分析(IFA)以及质膜分离和邻近连接分析(PLA)表明,Hrs从细胞质转移至感染细胞的质膜,并与α-辅肌动蛋白-4相互作用。此外,感染诱导丝氨酸/苏氨酸激酶ROCK1(RhoA GTP酶的下游靶点)发生质膜转位并激活。敲低Hrs减少了这些相互作用,表明ROCK1的募集是一个由Hrs介导的事件。Hrs与ROCK1之间的相互作用对于ROCK1诱导的NHE1(钠/氢交换体1)磷酸化至关重要,NHE1参与细胞内pH的调节。因此,我们的研究证明了ESCRT蛋白Hrs在巨胞饮作用过程中与质膜的关联,并表明KSHV进入需要Hrs和ROCK1依赖性机制,且ROCK1介导的NHE1磷酸化和pH变化是KSHV巨胞饮作用所需的关键事件。

重要性

巨胞饮作用是KSHV进入人真皮微血管内皮细胞(KSHV的天然靶细胞)的主要途径。尽管ESCRT蛋白Hrs在泛素化蛋白的内体移动和分选至溶酶体方面已得到广泛研究,但其在巨胞饮作用中的功能尚不清楚。在本研究中,我们首次证明,在KSHV感染后,内源性Hrs定位于质膜,且膜相关的Hrs促进信号分子组装、巨胞饮作用和病毒进入。Hrs将ROCK1募集至膜上激活NHE1,这对于巨胞饮作用过程中膜下细胞内pH升高是必需的。这些研究表明,Hrs从细胞质到质膜的定位对于在KSHV巨胞饮作用过程中将膜动力学与细胞质信号事件偶联很重要。

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The ESCRT machinery.
Curr Biol. 2012 Feb 21;22(4):R116-20. doi: 10.1016/j.cub.2012.01.028.

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