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具有增强的无细胞病毒滴度和传播能力的牛泡沫病毒变体的体外进化

In Vitro Evolution of Bovine Foamy Virus Variants with Enhanced Cell-Free Virus Titers and Transmission.

作者信息

Bao Qiuying, Hipp Michaela, Hugo Annette, Lei Janet, Liu Yang, Kehl Timo, Hechler Torsten, Löchelt Martin

机构信息

Division of Molecuar Diagnostics of Oncogenic Infections, Research Focus Infection, Inflammation and Cancer, German Cancer Research Center (Deutsches Krebsforschungszentrum, DKFZ), Im Neuenheimer Feld 242, 69120, Germany.

Department of Oncology, University of Oxford, Oxford OX3 7DQ, UK.

出版信息

Viruses. 2015 Nov 11;7(11):5855-74. doi: 10.3390/v7112907.

Abstract

Virus transmission is essential for spreading viral infections and is a highly coordinated process which occurs by cell-free transmission or cell-cell contact. The transmission of Bovine Foamy Virus (BFV) is highly cell-associated, with undetectable cell-free transmission. However, BFV particle budding can be induced by overexpression of wild-type (wt) BFV Gag and Env or artificial retargeting of Gag to the plasma membrane via myristoylation membrane targeting signals, closely resembling observations in other foamy viruses. Thus, the particle release machinery of wt BFV appears to be an excellent model system to study viral adaption to cell-free transmission by in vitro selection and evolution. Using selection for BFV variants with high cell-free infectivity in bovine and non-bovine cells, infectivity dramatically increased from almost no infectious units to about 105-106 FFU (fluorescent focus forming units)/mL in both cell types. Importantly, the selected BFV variants with high titer (HT) cell-free infectivity could still transmit via cell-cell contacts and were neutralized by serum from naturally infected cows. These selected HT-BFV variants will shed light into virus transmission and potential routes of intervention in the spread of viral infections. It will also allow the improvement or development of new promising approaches for antiretroviral therapies.

摘要

病毒传播对于病毒感染的扩散至关重要,是一个高度协调的过程,可通过无细胞传播或细胞间接触发生。牛泡沫病毒(BFV)的传播与细胞高度相关,无细胞传播难以检测到。然而,野生型(wt)BFV Gag和Env的过表达或通过肉豆蔻酰化膜靶向信号将Gag人工重定向到质膜可诱导BFV颗粒出芽,这与其他泡沫病毒的观察结果非常相似。因此,wt BFV的颗粒释放机制似乎是一个很好的模型系统,可用于通过体外选择和进化研究病毒对无细胞传播的适应性。通过在牛细胞和非牛细胞中选择具有高无细胞感染性的BFV变体,两种细胞类型中的感染性从几乎没有感染单位显著增加到约105-106荧光灶形成单位(FFU)/mL。重要的是,所选的具有高滴度(HT)无细胞感染性的BFV变体仍可通过细胞间接触传播,并被自然感染奶牛的血清中和。这些选定的HT-BFV变体将有助于揭示病毒传播以及病毒感染传播的潜在干预途径。它还将有助于改进或开发新的有前景的抗逆转录病毒疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce3c/4664980/6228c4fccffa/viruses-07-02907-g001.jpg

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