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鉴定TRAPPC8作为人乳头瘤病毒进入细胞所需的宿主因子。

Identification of TRAPPC8 as a host factor required for human papillomavirus cell entry.

作者信息

Ishii Yoshiyuki, Nakahara Tomomi, Kataoka Michiyo, Kusumoto-Matsuo Rika, Mori Seiichiro, Takeuchi Takamasa, Kukimoto Iwao

机构信息

Pathogen Genomics Center, National Institute of Infectious Diseases, Tokyo, Japan.

出版信息

PLoS One. 2013 Nov 14;8(11):e80297. doi: 10.1371/journal.pone.0080297. eCollection 2013.

Abstract

Human papillomavirus (HPV) is a non-enveloped virus composed of a circular DNA genome and two capsid proteins, L1 and L2. Multiple interactions between its capsid proteins and host cellular proteins are required for infectious HPV entry, including cell attachment and internalization, intracellular trafficking and viral genome transfer into the nucleus. Using two variants of HPV type 51, the Ma and Nu strains, we have previously reported that MaL2 is required for efficient pseudovirus (PsV) transduction. However, the cellular factors that confer this L2 dependency have not yet been identified. Here we report that the transport protein particle complex subunit 8 (TRAPPC8) specifically interacts with MaL2. TRAPPC8 knockdown in HeLa cells yielded reduced levels of reporter gene expression when inoculated with HPV51Ma, HPV16, and HPV31 PsVs. TRAPPC8 knockdown in HaCaT cells also showed reduced susceptibility to infection with authentic HPV31 virions, indicating that TRAPPC8 plays a crucial role in native HPV infection. Immunofluorescence microscopy revealed that the central region of TRAPPC8 was exposed on the cell surface and colocalized with inoculated PsVs. The entry of Ma, Nu, and L2-lacking PsVs into cells was equally impaired in TRAPPC8 knockdown HeLa cells, suggesting that TRAPPC8-dependent endocytosis plays an important role in HPV entry that is independent of L2 interaction. Finally, expression of GFP-fused L2 that can also interact with TRAPPC8 induced dispersal of the Golgi stack structure in HeLa cells, a phenotype also observed by TRAPPC8 knockdown. These results suggest that during viral intracellular trafficking, binding of L2 to TRAPPC8 inhibits its function resulting in Golgi destabilization, a process that may assist HPV genome escape from the trans-Golgi network.

摘要

人乳头瘤病毒(HPV)是一种无包膜病毒,由环状DNA基因组以及两种衣壳蛋白L1和L2组成。HPV具有传染性的进入过程需要其衣壳蛋白与宿主细胞蛋白之间进行多种相互作用,包括细胞附着与内化、细胞内运输以及病毒基因组转移至细胞核。利用HPV 51型的两个变体Ma和Nu毒株,我们之前报道过高效假病毒(PsV)转导需要MaL2。然而,赋予这种L2依赖性的细胞因子尚未得到鉴定。在此我们报道转运蛋白颗粒复合体亚基8(TRAPPC8)与MaL2特异性相互作用。在HeLa细胞中敲低TRAPPC8后,接种HPV51Ma、HPV16和HPV31假病毒时报告基因表达水平降低。在HaCaT细胞中敲低TRAPPC8也显示出对真实HPV31病毒体感染的易感性降低,表明TRAPPC8在天然HPV感染中起关键作用。免疫荧光显微镜检查显示TRAPPC8的中央区域暴露于细胞表面并与接种的假病毒共定位。在敲低TRAPPC8的HeLa细胞中,Ma、Nu以及缺乏L2的假病毒进入细胞均同样受到损害,这表明依赖TRAPPC8的内吞作用在HPV进入过程中起重要作用,且该过程独立于L2相互作用。最后,能够与TRAPPC8相互作用的绿色荧光蛋白融合L2的表达诱导HeLa细胞中高尔基体堆叠结构分散,敲低TRAPPC8时也观察到这种表型。这些结果表明,在病毒细胞内运输过程中,L2与TRAPPC8的结合抑制其功能,导致高尔基体不稳定,这一过程可能有助于HPV基因组从反式高尔基体网络逃逸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0ab/3828182/474e86eaf19f/pone.0080297.g001.jpg

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