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Baculovirus expression system for magnetic sorting of infected cells and enhanced titer determination

机译:杆状病毒表达系统,用于磁性分选感染细胞并提高滴度测定

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摘要

Recombinant baculoviruses derived from the Autographa californica nuclear polyhedrosis virus (AcNPV) are widely used to express heterologous genes in insect cells, but the use of the baculovirus expression vector system (BEVS) is hampered by slow and tedious procedures,for the selection and separation of baculovirus-infected insect cells and for titer determination. Here we developed a new technology based on the bicistronic vector with a fusion protein of the human integral plasma membrane glycoprotein CD4 and green fluorescent protein (GFP) for concomitant expression of target proteins in insect Sf21 cells. Magnetic cell sorting (MACS) technology with anti-CD4 antibody-labeled superparamagnetic beads was used to separate the baculovirus-infected from the nominated insect cells and therefore to increase the virus titer and to reduce process time. With the herein described use of the MACS-improved baculovirus expression plasmid MACS in baculovirus expression (pMACSiBac-1), we have been able to select the baculovirus-infected insect cells at all early time point of the infection cycle and therefore enrich the virus titer dramatical Furthermore, simple end point dilution and GFP fluorescence detection can be used for early and facile detection of recombinant viruses and simplified titer determinations. We show that the bicistronic pMACSiBac-1 with an additional multiple cloning site under the control of the very late promoter polyhedrin (P-PH) allows for the expression of target proteins in high amounts, less workloads, and shorter timelines.
机译:衍生自加利福尼亚州产的Autographa californica核多角体病毒(AcNPV)的重组杆状病毒被广泛用于在昆虫细胞中表达异源基因,但是杆状病毒表达载体系统(BEVS)的使用受到缓慢繁琐的程序的限制,无法选择和分离杆状病毒感染的昆虫细胞并进行滴度测定。在这里,我们开发了一种基于双顺反子载体与人完整质膜糖蛋白CD4和绿色荧光蛋白(GFP)融合蛋白的新技术,用于在昆虫Sf21细胞中同时表达目标蛋白。使用具有抗CD4抗体标记的超顺磁性珠的磁性细胞分选(MACS)技术将感染的杆状病毒与指定的昆虫细胞分离开,从而提高了病毒滴度并减少了处理时间。通过本文所述的在杆状病毒表达(pMACSiBac-1)中使用MACS改良的杆状病毒表达质粒MACS,我们已经能够在感染周期的所有早期时间点选择杆状病毒感染的昆虫细胞,并因此增加了病毒滴度此外,简单的终点稀释和GFP荧光检测可用于重组病毒的早期和简便检测以及简化的滴度测定。我们显示,双顺反子pMACSiBac-1具有在非常晚的启动子多面体(P-PH)的控制下的额外的多个克隆位点,可大量表达靶蛋白,减少工作量并缩短时间表。

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