SplitCore Technology Allows Efficient Production of Virus-Like Particles Presenting a Receptor-Contacting Epitope of Human IgE.
A Zh Baltabekova, Zh S Shagyrova, A S Kamzina, M Voykov, Ye Zhiyenbay, E M Ramanculov, A V Shustov
Index: Mol. Biotechnol. 57 , 746-55, (2015)
Full Text: HTML
Abstract
Immunoglobulin E (IgE) plays a central role in type I hypersensitivity including allergy and asthma. Novel treatment strategy envisages development of a therapeutic vaccine designed to elicit autologous blocking antibodies against the IgE. We sought to develop an IgE-epitope antigen that induces antibodies against a receptor-contacting epitope on human IgE molecule. We designed the VLP immunogens which utilize hepatitis B virus core protein (HBcAg) as a carrier, and present arrays of the receptor-contacting epitopes of the human IgE on their surfaces. FG loop from the IgE domain Cε3 was engineered into the HBcAg. Two constructs explore a well-established approach of insertion into a main immunodominant region of the HBcAg. Third construct is different in that the carrier is produced in a form of an assembly of two polypeptide chains which upon expression remain associated in a stable VLP-forming subunit (SplitCore technology). No VLPs were isolated from E.coli expressing the IgE-epitope antigens with contiguous sequences. On the contrary, the SplitCore antigen carrying the FG loop efficiently formed the VLPs. Immunization of mice with the VLPs presenting receptor-contacting epitope of the IgE elicited antibodies recognizing the human IgE in ELISA.
Related Compounds
Related Articles:
2015-07-01
[Parasitol. Res. 114 , 2743-55, (2015)]
Analysis and testing of biological stains--the Biological Stain Commission Procedures.
2002-01-01
[Biotech. Histochem. 77(5&6) , 237-275, (2002)]
Phenylhydrazine administration accelerates the development of experimental cerebral malaria.
2015-09-01
[Exp. Parasitol. 156 , 1-11, (2015)]
2014-07-16
[Bioconjug. Chem. 25(7) , 1301-10, (2014)]
2015-06-21
[Analyst 140 , 4001-6, (2015)]