Jarvis D L, Finn E E
Department of Entomology, Texas A&M University, College Station 77843, USA.
Nat Biotechnol. 1996 Oct;14(10):1288-92. doi: 10.1038/nbt1096-1288.
The baculovirus-insect cell expression system is well-suited for recombinant glycoprotein production because baculovirus vectors can provide high levels of expression and insect cells can modify newly synthesized proteins in eucaryotic fashion. However, the N-glycosylation pathway of baculovirus-infected insect cells differs from the pathway found in higher eucaryotes, as indicated by the fact that glycoproteins produced in the baculovirus system typically lack complex biantennary N-linked oligosaccharide side chains containing penultimate galactose and terminal sialic acid residues. We recently developed a new type of baculovirus vector that can express foreign genes immediately after infection under the control of the viral ie1 promoter. These immediate early baculovirus expression vectors can be used to modify the insect cell N-glycosylation pathway and produce a foreign glycoprotein with more extensively processed N-linked oligosaccharides. These vectors can also be used to study the influence of the late steps in N-linked oligosaccharide processing on glycoprotein function. Further development could lead to baculovirus-insect cell expression systems that can produce recombinant glycoproteins with complex biantennary N-linked oligosaccharides structurally identical to those produced by higher eucaryotes.
杆状病毒-昆虫细胞表达系统非常适合用于重组糖蛋白的生产,因为杆状病毒载体能够实现高水平表达,且昆虫细胞能够以真核方式修饰新合成的蛋白质。然而,杆状病毒感染的昆虫细胞的N-糖基化途径与高等真核生物中的途径不同,这一事实表明,杆状病毒系统中产生的糖蛋白通常缺乏含有倒数第二个半乳糖和末端唾液酸残基的复杂双天线N-连接寡糖侧链。我们最近开发了一种新型杆状病毒载体,该载体在病毒ie1启动子的控制下,感染后可立即表达外源基因。这些立即早期杆状病毒表达载体可用于修饰昆虫细胞的N-糖基化途径,并产生具有更广泛加工的N-连接寡糖的外源糖蛋白。这些载体还可用于研究N-连接寡糖加工后期步骤对糖蛋白功能的影响。进一步的发展可能会导致杆状病毒-昆虫细胞表达系统能够生产出具有与高等真核生物产生的结构相同的复杂双天线N-连接寡糖的重组糖蛋白。