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瞬时型杆状病毒启动子在转化昆虫细胞中组成型和杆状病毒诱导型转基因表达的效用。

Utility of temporally distinct baculovirus promoters for constitutive and baculovirus-inducible transgene expression in transformed insect cells.

机构信息

Department of Molecular Biology, University of Wyoming, 1000 E. University Avenue, Laramie, WY 82071, USA.

出版信息

J Biotechnol. 2013 May 10;165(1):11-7. doi: 10.1016/j.jbiotec.2013.02.007. Epub 2013 Feb 28.

Abstract

Genetically transformed lepidopteran insect cell lines have biotechnological applications as constitutive recombinant protein production platforms and improved hosts for baculovirus-mediated recombinant protein production. Insect cell transformation is often accomplished with a DNA construct(s) encoding a foreign protein(s) under the transcriptional control of a baculovirus immediate early promoter, such as the ie1 promoter. However, the potential utility of increasingly stronger promoters from later baculovirus gene classes, such as delayed early (39K), late (p6.9), and very late (polh), has not been systematically assessed. Hence, we produced DNA constructs encoding secreted alkaline phosphatase (SEAP) under the transcriptional control of each of the four temporally distinct classes of baculovirus promoters, used them to transform insect cells, and compared the levels of SEAP RNA and protein production obtained before and after baculovirus infection. The ie1 construct was the only one that supported SEAP protein production by transformed insect cells prior to baculovirus infection, confirming that only immediate early promoters can be used to isolate transformed insect cells for constitutive recombinant protein production. However, baculovirus infection activated transgene expression by all four classes of baculovirus promoters. After infection, cells transformed with the very late (polh) and late (p6.9) promoter constructs produced the highest levels of SEAP RNA, but only low levels of SEAP protein. Conversely, cells transformed with the immediate early (ie1) and delayed early (39K) promoter constructs produced lower levels of RNA, but equal or higher levels of SEAP protein. Unexpectedly, the 39K promoter construct provided tightly regulated, baculovirus-inducible protein production at higher levels than the later promoter constructs. Thus, this study demonstrated the utility of the 39K promoter for insect cell engineering, particularly when one requires higher levels of effector protein production than obtained with ie1 and/or when constitutive transgene expression adversely impacts host cell fitness and/or genetic stability.

摘要

基因改造的鳞翅目昆虫细胞系具有生物技术应用价值,可作为组成型重组蛋白生产平台和杆状病毒介导的重组蛋白生产的改良宿主。昆虫细胞转化通常是通过 DNA 构建体(s)来完成的,该构建体编码在杆状病毒早期启动子(如 ie1 启动子)转录控制下的外源蛋白(s)。然而,越来越强的启动子的潜在效用,如晚期(p6.9)和极晚期(polh)的延迟早期(39K)、晚期(p6.9)和极晚期(polh)等杆状病毒基因类别的启动子,尚未得到系统评估。因此,我们生产了在四个不同的杆状病毒启动子家族转录控制下编码分泌型碱性磷酸酶(SEAP)的 DNA 构建体,将其用于转化昆虫细胞,并比较了在杆状病毒感染前后获得的 SEAP RNA 和蛋白产量。只有 ie1 构建体支持转化昆虫细胞在杆状病毒感染前产生 SEAP 蛋白,这证实了只有早期启动子可用于分离转化昆虫细胞进行组成型重组蛋白生产。然而,杆状病毒感染激活了所有四个杆状病毒启动子家族的转基因表达。感染后,用极晚期(polh)和晚期(p6.9)启动子构建体转化的细胞产生了最高水平的 SEAP RNA,但只产生了低水平的 SEAP 蛋白。相反,用早期启动子(ie1)和延迟早期(39K)启动子构建体转化的细胞产生的 RNA 水平较低,但 SEAP 蛋白水平相等或更高。出乎意料的是,39K 启动子构建体提供了紧密调控的、杆状病毒诱导的蛋白生产,其水平高于后期启动子构建体。因此,这项研究证明了 39K 启动子在昆虫细胞工程中的应用价值,特别是当需要更高水平的效应蛋白生产时,其水平高于 ie1,或者当组成型转基因表达对宿主细胞适应性和/或遗传稳定性产生不利影响时。

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