Physiology and Immunology Branch, Research Division, U.S. Army Medical Research Institute of Chemical Defense, 3100 Ricketts Point Road, Aberdeen Proving Ground, MD 21010-5400, United States.
Chem Biol Interact. 2010 Sep 6;187(1-3):388-92. doi: 10.1016/j.cbi.2010.02.022. Epub 2010 Feb 20.
Human serum paraoxonase-1 (HuPON1) is difficult to either purify from plasma or functionally express in high yield from recombinant sources. Here, we describe the characterization of functional HuPON1 expressed and purified from Trichoplusia ni (T. ni) larvae infected with an orally active form of baculovirus. SDS-PAGE and anti-HuPON1 Western blot analyses yielded only three bands of approximately 41, 42, and 44 kDa. MALDI-TOF confirmed the identity of each of these bands as HuPON1 with greater than 95% confidence. These isoforms result from differential glycosylation of the enzyme as indicated by peptide mapping, mass analysis, and PNGase F deglycosylation experiments. Recombinant insect-produced HuPON1 hydrolyzed phenyl acetate, paraoxon, and the nerve agents GF, VX, and VR. The enzyme had dramatic stereoselectivity for the P+ isomers of VX and VR. T. ni larvae expressing HuPON1 were remarkably resistant to the pesticide chlorpyrifos. Together, these results demonstrate that the caterpillar of the T. ni moth can be used as an expression system to produce large quantities of functional recombinant HuPON1. Insect production of HuPON1 may provide a source for both in vitro enzymatic and crystallographic studies and in vivo stability and anti-nerve agent efficacy testing.
人血清对氧磷酶 1(HuPON1)难以从血浆中纯化,也难以从重组来源中高产量地功能性表达。在这里,我们描述了从感染具有口服活性杆状病毒的 Trichoplusia ni(T. ni)幼虫中表达和纯化功能性 HuPON1 的特征。SDS-PAGE 和抗 HuPON1 Western blot 分析仅产生约 41、42 和 44 kDa 的三个条带。MALDI-TOF 证实了这些条带中每一个都是 HuPON1,置信度超过 95%。这些同工型是由于酶的差异糖基化所致,如肽图谱、质量分析和 PNGase F 去糖基化实验所示。重组昆虫产生的 HuPON1 水解苯乙酸酯、对氧磷和神经毒剂 GF、VX 和 VR。该酶对 VX 和 VR 的 P+异构体具有显著的立体选择性。表达 HuPON1 的 T. ni 幼虫对杀虫剂毒死蜱具有惊人的抗性。总之,这些结果表明,T. ni 飞蛾的毛毛虫可用作表达系统来大量生产功能性重组 HuPON1。HuPON1 的昆虫生产可能为体外酶学和晶体学研究以及体内稳定性和抗神经毒剂功效测试提供来源。