Author:
Wubshet Ashenafi Kiros,Li Guo-xiu,Li Qian,Dai Jun-Fei,Ding Yao-Zhong,Zhou Luoyi,Qu Min,Wang Yang,Ma Zhongyuan,Werid Gebremeskel Mamu,Abera Birhanu Hadush,Kebede Asmelash Tassew,Sun Yuefeng,Yin Xiangping,Liu Yongsheng,Jie Zhang
Abstract
Abstract
Background
Bovine parvovirus (BPV) is an autonomous DNA virus with a smaller molecular size and subtle differences in its structural proteins, unlike other animal parvoviruses. More importantly, this virus has the potential to produce visible to silent economic catastrophes in the livestock business, despite receiving very little attention. Parvoviral virus-like particles (VLPs) as vaccines and as logistical platforms for vaccine deployment are well studied. However, no single experimental report on the role of VP1 in the assembly and stability of BPV-VLPs is available. Furthermore, the self-assembly, integrity and stability of the VLPs of recombinant BPV VP2 in comparison to VP1 VP2 Cap proteins using any expression method has not been studied previously. In this study, we experimentally evaluated the self-assembling ability with which BPV virus-like particles (VLPs) could be synthesized from a single structural protein (VP2) and by integrating both VP2 and VP1 amino acid sequences.
Methods
In silico and experimental cloning methods were carried out. His-tagged and without-His-tag VP2 and V1VP2-encoding amino acid sequences were cloned and inserted into pFastbacdual, and insect cell-generated recombinant protein was evaluated by SDS‒PAGE and western blot. Period of infectivity and expression level were determined by IFA. The integrity and stability of the BPV VLPs were evaluated by transmission electron microscopy. The secondary structure of the BPV VLPs from both VP2 and V1VP2 was analyzed by circular dichroism.
Results
Our findings show that VP2 alone was equally expressed and purified into detectable proteins, and the stability at different temperatures and pH values was not appreciably different between the two kinds of VLPs. Furthermore, BPV-VP2 VLPs were praised for their greater purity and integrity than BPV-VP1VP2 VLPs, as indicated by SDS‒PAGE. Therefore, our research demonstrates that the function of VP1 has no bearing on the stability or integrity of BPV-VLPs.
Conclusions
In summary, incredible physiochemically stable BPV VP2-derived VLPs have been found to be promising candidates for the development of multivalent vaccines and immunodiagnostic kits against enteric viruses and to carry heterogeneous epitopes for various economically important livestock diseases.
Publisher
Springer Science and Business Media LLC
Reference42 articles.
1. Abixanti FR, Warfield MS. Recovery of a hemadsorbing virus (HADEN) from the gastrointestinal tract of calves. Virology. 1961;14:288–9.
2. Amexis G, Y.N.,. Parvovirus B19 empty capsids as antigen carriers for presentation of antigenic determinants of dengue 2 virus. J Infect Dis. 2006;194:790–4.
3. Bachmann MF, Jennings GT. Virus-like particles: combining innate and adaptive immunity for effective vaccination Novel vaccination strategies. Weinheim: Wiley; 2004. p. 415–32.
4. Banerjee PT, Olson WH, Allison DP, Bates RC, Snyder CE, Mitra S. Electron microscopic comparison of the sequences of single-stranded genomes of mammalian parvoviruses by heteroduplex mapping. J Mol Biol. 1983;166:257–72.
5. Barnes MA, Wright RE, Bodine AB, Alberty CF. Frequency of bluetongue and bovine parvovirus infection in cattle in South Carolina dairy herds. Am J Vet Res. 1982;6:1078–80.