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Maximizing baculovirus-mediated foreign proteins expression in mammalian cells.

机译:最大化杆状病毒介导的外源蛋白在哺乳动物细胞中的表达。

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Since the discovery of mammalian cells susceptible to baculovirus transduction in 1995, baculovirus has emerged as a safe, economical and convenient tool for introducing foreign genetic material into mammalian systems. The feasibility of baculovirus as a novel gene transfer vehicle for large scale mammalian protein expression was not obvious at first, as the baculovirus genome is unable to amplify within mammalian cells and expression of the transferred foreign gene does not usually last more than 20 days. However, several recent articles have demonstrated that baculovirus contains both the elements - hr sequences, and the factor - IE2 protein, which can function in mammalian cells to dramatically boost baculovirus-transduced gene expression. The longevity of genes transferred by baculovirus can also be extended by inserting a replication ori with the necessary factors and induce self-replicating episomes. Lastly, peptide-based baculovirus surface modification and two groups of drugs: histone deacetylase inhibitors and microtubule depolymerizing agents, which improve baculovirus gene expression were described. In this article we summarized ways to activate, enhance, and prolong baculovirus-mediated foreign protein expression. The mechanism behind IE2 activation through its unique nuclear body structure was given special emphasis, including our most current data which suggested PML NBs could be disrupted by IE2. Finally, strategies to maximizing mammalian protein production through baculovirus gene transfer are proposed in prospect to current breakthroughs.
机译:自1995年发现易受杆状病毒转导的哺乳动物细胞以来,杆状病毒已成为一种安全,经济,方便的工具,可将外来遗传物质引入哺乳动物系统。起初,杆状病毒作为新型基因转移工具进行大规模哺乳动物蛋白表达的可行性并不明显,因为杆状病毒基因组无法在哺乳动物细胞内扩增,并且转移的外源基因的表达通常不会持续超过20天。但是,最近的几篇文章证明,杆状病毒同时含有hr序列和IE2因子,它们可以在哺乳动物细胞中发挥作用,从而大大增强杆状病毒转导的基因表达。杆状病毒转移基因的寿命也可以通过插入带有必要因子的复制原点并诱导自我复制的附加体来延长。最后,描述了基于肽的杆状病毒表面修饰和两组药物:组蛋白脱乙酰基酶抑制剂和微管解聚剂,它们可改善杆状病毒基因的表达。在本文中,我们总结了激活,增强和延长杆状病毒介导的外源蛋白表达的方法。特别强调了IE2通过其独特的核体结构激活的机制,包括我们的最新数据表明IE2可能破坏了PML NB。最后,提出了通过杆状病毒基因转移来最大化哺乳动物蛋白产量的策略,以期展望当前的突破。

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