| Literature DB >> 31720017 |
A P Rudometov1, N B Rudometova1, D N Shcherbakov1,2, A A Lomzov3,4, O N Kaplina1, N S Shcherbakova1, A A Ilyichev1, A Yu Bakulina1,4, L I Karpenko1.
Abstract
The human immunodeficiency virus (HIV-1) poses a serious risk to global public health. The development of a safe and effective vaccine could stop the HIV/AIDS pandemic. Much of the research focused on HIV-1 prevention through vaccination is aimed at developing immunogens and immunization strategies to induce the formation of antibodies with neutralizing activity against a broad range of HIV-1 isolates (bNAbs). The objective of this study was to develop immunogens capable of targeting an immune response to MPER, one of the regions of bNAb binding in Env. Two immunogens carrying MPER fragments on their scaffolds (protein YkuJ Bacillus subtilis and artificial polypeptide TBI) were constructed. Circular dichroism spectroscopy was used to show that the secondary structure of the immunogens was consistent with their theoretical models. The antigenic structure of the MPER-TBI and YkuJ-MPER proteins was characterized using bNAbs that recognize HIV-1 MPER (2F5, 4E10, and 10E8). The rabbit model made it possible to show the immunogenicity of the constructed recombinant proteins. The resulting serum was found to be cross-reactive with immunogens carrying MPER. The constructs designed and characterized in this study can be used for targeting the humoral immune response to MPER, which is known to be one of the sites of HIV-1 vulnerability. Copyright ® 2019 National Research University Higher School of Economics.Entities:
Keywords: HIV-1; MPER; bNAbs; neutralizing antibody epitopes; recombinant immunogens
Year: 2019 PMID: 31720017 PMCID: PMC6826149 DOI: 10.32607/20758251-2019-11-3-56-65
Source DB: PubMed Journal: Acta Naturae ISSN: 2075-8251 Impact factor: 1.845
Fig. 2The model of the interactions of YkuJ with the Fab fragments of mAbs 2F5 and 4E10 (A) and with 10E8 (B). A – The Fab fragments of antibody 2F5 are shown in purple; the Fab fragments of antibody 4E10 are shown in blue; B – The Fab fragments of antibody 10E8 are shown in green. The models were built using the PyMOL software
Fig. 3A schematic presentation of the structure of the immunogens TBI_tag and MPER-TBI. B-cell epitopes are shown on a dark background; Th-epitopes are shown on a light background. InfB is a fragment of the E. coli transcription activator protein, InfB; 6 × His – six histidine amino acid residues; MPER – parts of the membrane-proximal external region of HIV-1
Fig. 4Electrophoregram of the proteins MPER-TBI (2) and YkuJ-MPER (3); 1 – molecular weight marker
Fig. 5Amino acid sequence and the secondary structure of the MPER-TBI protein. The unordered areas are shown in blue; the α-helices are shown in red; and β-sheets are shown in green. The PSSfinder prediction method was used
Secondary structural elements of the proteins YkuJ-MPER and MPER-TBI
| Structure | Sample | |||
|---|---|---|---|---|
| YkuJ-MPER | MPER-TBI | |||
|
Theoretical |
CD spectroscopy |
Theoretical |
CD spectroscopy | |
| α-helices | 45 | 26 | 56 | 68 |
| β-strands | 24 | 26 | 3 | 0 |
| Turn I | – | 5 | – | 5 |
| Turn II | – | 0 | – | 0 |
| Unordered structures | 31 | 43 | 41 | 27 |
Fig. 6Dot blot assay: 1 – TBI_tag (control); 2 – MPERTBI; 3 –YkuJ-MPER; 2F5, 4E10 and 10E8 – mAbs. Twofold dilutions of the corresponding proteins are applied from top to bottom
Fig. 7ELISA results of serum samples from the rabbits immunized with MPER-TBI or YkuJ-MPER. A is a group of rabbits immunized with MPER-TBI: the protein MPER-TBI is sorbed as an antigen. B is a group of rabbits immunized with YkuJMPER: the protein YkuJ-MPER is sorbed as an antigen. The OD value (450 nm) is plotted on the Y axis; serum dilutions are plotted on the X axis. The data in the diagrams are presented as the mean value and standard deviation
Fig. 8ELISA results of serum samples from the rabbits immunized with MPER-TBI. A – the protein MPER-TBI is sorbed as an antigen; B – the protein YkuJMPER is sorbed as an antigen. Preimmune is the serum of the intact animals. Immune is the serum of the animals after the 4th immunization
Fig. 9ELISA results of serum samples from rabbits immunized with YkuJ-MPER. A – the protein YkuJMPER is sorbed as an antigen; B – the protein MPER-TBI is sorbed as an antigen. Preimmune is the serum of the intact animals. Immune is the serum of the animals after the 4th immunization
Fig. 10Analysis of blood serum samples from animals immunized with the proteins MPER-TBI and YkuJMPER with a New Lav Blot I western blot kit. 1 – positive control from the New Lav Blot I kit; 2 – serum of rabbits immunized with MPERTBI; 3 – serum of rabbits immunized with YkuJ-MPER; 4 – preimmune serum of rabbits