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在缺乏BST-2的细胞系中包膜病毒产量增加。

Enhanced production of enveloped viruses in BST-2-deficient cell lines.

作者信息

Yi Eunbi, Oh Jinsoo, Giao Ngoc Q, Oh Soohwan, Park Se-Ho

机构信息

College of Life Science and Biotechnology, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul 02841, Republic of Korea.

ImmunoMax Co., Ltd, Korea University, Seongbuk-gu, Seoul, Republic of Korea.

出版信息

Biotechnol Bioeng. 2017 Oct;114(10):2289-2297. doi: 10.1002/bit.26338. Epub 2017 Jun 29.

Abstract

Despite all the advantages that cell-cultured influenza vaccines have over egg-based influenza vaccines, the inferior productivity of cell-culture systems is a major drawback that must be addressed. BST-2 (tetherin) is a host restriction factor which inhibits budding-out of various enveloped viruses from infected host cells. We developed BST-2-deficient MDCK and Vero cell lines to increase influenza virus release in cell culture. BST-2 gene knock-out resulted in increased release of viral particles into the culture medium, by at least 2-fold and up to 50-fold compared to release from wild-type counterpart cells depending on cell line and virus type. The effect was not influenza virus/MDCK/Vero-specific, but was also present in a broad range of host cells and virus families; we observed similar results in murine, human, canine, and monkey cell lines with viruses including MHV-68 (Herpesviridae), influenza A virus (Orthomyxoviridae), porcine epidemic diarrhea virus (Coronaviridae), and vaccinia virus (Poxviridae). Our results suggest that the elimination of BST-2 expression in virus-producing cell lines can enhance the production of viral vaccines. Biotechnol. Bioeng.2017;114: 2289-2297. © 2017 Wiley Periodicals, Inc.

摘要

尽管细胞培养流感疫苗相对于基于鸡蛋的流感疫苗具有诸多优势,但细胞培养系统较低的生产力是一个必须解决的主要缺点。BST-2(束缚素)是一种宿主限制因子,可抑制各种包膜病毒从受感染的宿主细胞中出芽。我们开发了缺乏BST-2的MDCK和Vero细胞系,以增加细胞培养中流感病毒的释放。BST-2基因敲除导致病毒颗粒向培养基中的释放增加,与野生型对应细胞相比,根据细胞系和病毒类型,释放量至少增加2倍,最高可达50倍。这种效应并非流感病毒/MDCK/Vero所特有,在广泛的宿主细胞和病毒家族中也存在;我们在小鼠、人类、犬类和猴细胞系中,用包括MHV-68(疱疹病毒科)、甲型流感病毒(正粘病毒科)、猪流行性腹泻病毒(冠状病毒科)和痘苗病毒(痘病毒科)在内的病毒观察到了类似结果。我们的结果表明,消除病毒生产细胞系中BST-2的表达可以提高病毒疫苗的产量。《生物技术与生物工程》2017年;114:2289 - 2297。©2017威利期刊公司

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