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小鼠白血病病毒核心在有丝分裂和间期细胞中的动态变化及限制因素

Dynamics and restriction of murine leukemia virus cores in mitotic and interphase cells.

作者信息

Elis Efrat, Ehrlich Marcelo, Bacharach Eran

机构信息

Department of Cell Research and Immunology, The George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, Israel.

出版信息

Retrovirology. 2015 Nov 14;12:95. doi: 10.1186/s12977-015-0220-2.

Abstract

BACKGROUND

Murine leukemia viruses (MLVs) naturally infect unsynchronized T and B lymphocytes, thus, the incoming virus encounters both interphase and mitotic cells. While it is well accepted that MLV requires cell division to complete its replication cycle, it is not known if ab initio infection of mitotic cells can result in productive infection. This question is highly relevant since the milieu of mitotic cells is markedly different from this of interphase cells; e.g. lacking radial microtubule network and intact nuclear envelope. To follow MLV infection in mitotic and interphase cells in real-time, we employed our recently developed infectious MLV particles with labeled cores, cellular models expressing fluorescence markers of different intracellular compartments and protocols for reversible mitotic arrest of MLV-susceptible cells.

RESULTS

Multi-wavelength live cell imaging was employed to simultaneously visualize GFP-labeled MLV cores, DiD-labeled viral or cellular membranes, and fluorescently-labeled microtubules or chromosomes. Cells were imaged either at interphase or upon mitotic arrest with microtubule poisons. Analysis of virus localization and trajectories revealed entry by endocytosis at interphase and mitosis, and correlation between viral mobility parameters and presence or absence of polymerized interphase microtubules. The success of infection of viruses that entered cells in mitosis was evidenced by their ability to reverse transcribe, their targeting to condensed chromosomes in the absence of radial microtubule network, and gene expression upon exit from mitosis. Comparison of infection by N, B or NB -tropic viruses in interphase and mitotic human cells revealed reduced restriction of the N-tropic virus, for infection initiated in mitosis.

CONCLUSIONS

The milieu of the mitotic cells supports all necessary requirements for early stages of MLV infection. Such milieu is suboptimal for restriction of N-tropic viruses, most likely by TRIM5α.

摘要

背景

鼠白血病病毒(MLV)可自然感染未同步化的T和B淋巴细胞,因此,进入细胞的病毒会同时遇到间期细胞和有丝分裂细胞。虽然人们普遍认为MLV需要细胞分裂来完成其复制周期,但尚不清楚有丝分裂细胞的从头感染是否会导致 productive 感染。这个问题高度相关,因为有丝分裂细胞的环境与间期细胞的环境明显不同;例如,缺乏径向微管网络和完整的核膜。为了实时跟踪MLV在有丝分裂细胞和间期细胞中的感染情况,我们采用了我们最近开发的带有标记核心的感染性MLV颗粒、表达不同细胞内区室荧光标记的细胞模型以及用于MLV易感细胞可逆性有丝分裂阻滞的方案。

结果

采用多波长活细胞成像技术同时可视化绿色荧光蛋白(GFP)标记的MLV核心、DiD标记的病毒或细胞膜以及荧光标记的微管或染色体。细胞在间期或用微管毒物进行有丝分裂阻滞时进行成像。对病毒定位和轨迹的分析揭示了在间期和有丝分裂时通过内吞作用进入细胞,以及病毒移动参数与聚合间期微管的存在与否之间的相关性。进入有丝分裂细胞的病毒感染成功的证据包括它们逆转录的能力、在没有径向微管网络的情况下靶向浓缩染色体的能力以及从有丝分裂退出时的基因表达。比较N、B或NB嗜性病毒在间期和有丝分裂人类细胞中的感染情况发现,对于有丝分裂起始的感染,N嗜性病毒的限制减少。

结论

有丝分裂细胞的环境支持MLV感染早期的所有必要条件。这种环境对于N嗜性病毒的限制是次优的,最有可能是通过TRIM5α。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dcc/4650138/819a6a996bc5/12977_2015_220_Fig1_HTML.jpg

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