The immune complex transfer enzyme immunoassays for antibody IgGs to p17, p24, and reverse transcriptase (RT) of HIV-1 were tested under various conditions. Antibody IgGs to HIV-1 were reacted for up to 20 hr with 2,4dinitrophenyl-bovine serum albumin-recombinant HIV-1 protein conjugates and recombi
Preparations of recombinant HIV-1 p66 antigen to improve the specificity of immune complex transfer enzyme immunoassay of antibody IgG to HIV-1 reverse transcriptase
โ Scribed by Kazuya Hashinaka; Ichiro Nishikata; Seiichi Hashida; Akio Adachi; Shinichi Oka; Eiji Ishikawa
- Publisher
- John Wiley and Sons
- Year
- 2000
- Tongue
- English
- Weight
- 203 KB
- Volume
- 14
- Category
- Article
- ISSN
- 0887-8013
No coin nor oath required. For personal study only.
โฆ Synopsis
Recombinant HIV-1 p66 (rp66, a subunit of reverse transcriptase (RT), a heterodimer of p66 and p51) was produced in Escherichia coli in three different ways. First, rp66 was produced as a part of the fusion protein of lacZ protein and HIV-1 pol protein consisting of three components: protease (p10), RT (p51/p66), and integrase (p31), and was released from the fusion protein by the protease (pol-rp66). Second, rp66 with Ser-Ser at the N-terminus was produced as a fusion protein with maltose-binding protein containing a factor Xa site between the two proteins (MBP-Ser-Ser-rp66) and was released from the fusion protein by factor Xa (Ser-Ser-rp66). Third, rp66 with Met-Gly at the N-terminus was produced in transformed cells (Met-Gly-rp66). The recombinant proteins were purified from sonic extracts of transformed cells by ammonium sulfate fractionation and various column chromatographies. MBP-Ser-Ser-rp66 and Met-Gly-rp66 were readily purified in sufficient amounts for labeling with 2,4-dinitrophenyl groups and ฮฒ-D-galactosidase from E. coli, but pol-rp66 and Ser-Ser-rp66 were not for enzyme-labeling. Ser-Ser-rp66 was not only polymerized but also degraded to considerable extents. The purified preparations were labeled with 2,4-dinitrophenyl groups and ฮฒ-Dgalactosidase and were tested in immune complex transfer enzyme immunoassay of antibody IgG to HIV-1 RT using serum samples from 600 HIV-1 seronegative and 30 HIV-1 seropositive subjects. Among various combined uses of the two labeled preparations, the uses of 2,4-dinitrophenylated MBP-Ser-Ser-rp66 and pol-rp66 with ฮฒ-Dgalactosidase-labeled Met-Gly-rp66 showed the highest (99.8%) and the second highest (99.5%) specificities, which were higher than that with the labeled preparations used in the previous study (98.0%).
๐ SIMILAR VOLUMES
In order to perform the immune complex transfer enzyme immunoassays for HIV-1 p24 antigen and antibody IgGs to HIV-1 p17, reverse transcriptase and gp41 antigens as rapidly as possible, methods for rapid formation of the immune complexes on solid phase are described. HIV-1 p24 antigen was reacted wi
Recombinant p17 (rp17) antigen of HIV-1 and maltose binding protein-rp17 fusion protein (MBP-rp17) were immobilized onto polystyrene beads in different ways: rp17 and MBP-rp17 were immobilized directly onto polystyrene beads by physical adsorption; biotinyl-rp17 and biotinyl-MBP-rp17 were immobilize
Whole saliva samples collected from HIV-1 seropositive subjects by simple spitting without using any devices were dried on filter paper strips, from which filter paper discs of 3-mm diameter were punched out. The eluates of the discs were subjected to the immune complex transfer enzyme immunoassay f
Recombinant HIV-1 p17 antigen (rp17) and maltose binding protein-rp17 fusion protein (MBP-rp17) were immobilized in different ways: rp17 and MBP-rp17 were immobilized directly onto polystyrene beads by physical adsorption, and biotinyl-rp17, biotinyl-MBP-rp17, and 2,4-dinitrophenyl (DNP)-MBP-rp17 we