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Published on: September 15, 2016
PhIP-Seq Reveals Autoantibodies for Ubiquitously Expressed Antigens in Viral Myocarditis
Mahima T Rasquinha1, Ninaad Lasrado1,2, Erika Petro-Turnquist3
1School of Veterinary Medicine and Biomedical Sciences, University of Nebraska-Lincoln, Lincoln, NE 68583, USA.
Abstract:
Enteroviruses such as group B coxsackieviruses (CVB) are commonly suspected as causes of myocarditis that can lead to dilated cardiomyopathy (DCM), and the mouse model of CVB3 myocarditis is routinely used to understand DCM pathogenesis. Mechanistically, autoimmunity is suspected due to the presence of autoantibodies for select antigens. However, their role continues to be enigmatic, which also raises the question of whether the breadth of autoantibodies is sufficiently characterized. Here, we attempted to comprehensively analyze the autoantibody repertoire using Phage ImmunoPrecipitation Sequencing (PhIP-Seq), a versatile and high-throughput platform, in the mouse model of CVB3 myocarditis. First, PhIP-Seq analysis using the VirScan library revealed antibody reactivity only to CVB3 in the infected group but not in controls, thus validating the technique in this model. Second, using the mouse peptide library, we detected autoantibodies to 32 peptides from 25 proteins in infected animals that are ubiquitously expressed and have not been previously reported. Third, by using ELISA as a secondary assay, we confirmed antibody reactivity in sera from CVB3-infected animals to cytochrome c oxidase assembly factor 4 homolog (COA4) and phosphoinositide-3-kinase adaptor protein 1 (PIK3AP1), indicating the specificity of antibody detection by PhIP-Seq technology. Fourth, we noted similar antibody reactivity patterns in CVB3 and CVB4 infections, suggesting that the COA4- and PIK3AP1-reactive antibodies could be common to multiple CVB infections. The specificity of the autoantibodies was affirmed with influenza-infected animals that showed no reactivity to any of the antigens tested. Taken together, our data suggest that the autoantibodies identified by PhIP-Seq may have relevance to CVB pathogenesis, with a possibility that similar reactivity could be expected in human DCM patients.
Insights
This study used Phage ImmunoPrecipitation Sequencing (PhIP-Seq) to identify novel autoantibodies in a mouse model of coxsackievirus B (CVB) myocarditis, revealing potential links to dilated cardiomyopathy (DCM) pathogenesis.
Area of Science:
- Immunology
- Cardiology
- Virology
Background:
- Enteroviruses, particularly group B coxsackieviruses (CVB), are implicated in myocarditis and dilated cardiomyopathy (DCM).
- Autoimmunity, suggested by autoantibodies, is a suspected mechanism in CVB-induced DCM, but the autoantibody repertoire is not fully characterized.
Purpose of the Study:
- To comprehensively analyze the autoantibody repertoire in a mouse model of CVB3 myocarditis using Phage ImmunoPrecipitation Sequencing (PhIP-Seq).
- To identify novel autoantigens associated with CVB infection and explore their potential role in DCM pathogenesis.
Main Methods:
- Phage ImmunoPrecipitation Sequencing (PhIP-Seq) was employed using VirScan and mouse peptide libraries.
- Enzyme-Linked Immunosorbent Assay (ELISA) was used for secondary validation of antibody reactivity.
Main Results:
- PhIP-Seq confirmed CVB3-specific antibody reactivity in infected mice.
- Autoantibodies against 32 peptides from 25 ubiquitously expressed proteins were detected in CVB3-infected mice.
- Antibody reactivity to cytochrome c oxidase assembly factor 4 homolog (COA4) and phosphoinositide-3-kinase adaptor protein 1 (PIK3AP1) was confirmed by ELISA.
- Similar autoantibody patterns were observed in CVB3 and CVB4 infections, suggesting cross-reactivity.
Conclusions:
- PhIP-Seq effectively identified a broad spectrum of autoantibodies in CVB myocarditis.
- Novel autoantibodies targeting COA4 and PIK3AP1 may be relevant to CVB pathogenesis.
- These findings suggest a potential role for autoantibodies in human DCM and warrant further investigation.

