Ring M, Meredith J, Wiens C, Macins A, Brock H W, Phillips J E, Theilmann D A
Department of Zoology, University of British Columbia, Vancouver, Canada.
Insect Biochem Mol Biol. 1998 Jan;28(1):51-8. doi: 10.1016/s0965-1748(97)00096-9.
We expressed an N-terminally extended Schistocerca gregaria ion transport peptide (ScgITP) and its homologue (ion transport peptide-like; ITP-L) in insect Sf9 cells using baculovirus expression vectors. Antibodies raised against peptide fragments of ITP and ITP-L were used to detect and characterize the baculovirus expressed peptides (bacITP, bacITP-L). Biological activity of the expressed peptides was assayed using the highly specific bioassay for native ITP, namely the increase in ileal short-circuit current which is a measure of active Cl- transport. BacITP and bacITP-L expression was optimal in Sf9 cells infected at a multiplicity of infection of 1, grown in Grace's medium, and harvested 2-3 days after infection. Western blots showed that bacITP was 2 kDa larger than native or synthetic ITP. This difference was not due to glycosylation and could in part be attributed to post-translational cleavage of the ITP propeptide at a site 11 amino acids upstream of the cleavage site used by S. gregaria to produce native ITP. BacITP stimulated ileal short-circuit current but is significantly less active (270-fold) than synthetic ITP (synITP) possibly as a result of the N-terminal extension. Production of bacITP-L permitted us to show that it is not stimulatory in the bioassay but reduces the synITP response in vitro and thus may have some potential for enhancing the effectiveness of biological control agents such as baculoviruses.
我们使用杆状病毒表达载体在昆虫Sf9细胞中表达了N端延伸的沙漠蝗离子转运肽(ScgITP)及其同源物(离子转运肽样;ITP-L)。针对ITP和ITP-L肽片段产生的抗体用于检测和表征杆状病毒表达的肽(杆状ITP、杆状ITP-L)。使用针对天然ITP的高度特异性生物测定法来测定表达肽的生物活性,即回肠短路电流的增加,这是主动Cl-转运的一种测量方法。杆状ITP和杆状ITP-L在感染复数为1、在Grace培养基中生长并在感染后2-3天收获的Sf9细胞中表达最佳。蛋白质印迹显示杆状ITP比天然或合成的ITP大2 kDa。这种差异不是由于糖基化,部分可归因于ITP前体肽在沙漠蝗用于产生天然ITP的切割位点上游11个氨基酸处的翻译后切割。杆状ITP刺激回肠短路电流,但活性明显低于合成ITP(synITP)(低270倍),这可能是由于N端延伸的结果。杆状ITP-L的产生使我们能够证明它在生物测定中没有刺激作用,但在体外会降低synITP的反应,因此可能在提高杆状病毒等生物防治剂的有效性方面具有一定潜力。