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November 18, 2025JCI Insight5 citationsOpen Access

PhIP-Seq uncovers marked heterogeneity in acute rheumatic fever autoantibodies

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RMReuben McGregorLCLauren H. CarltonTOTimothy J. O’Donnell

Key Result

Acute rheumatic fever was associated with a global proteome-wide increase in autoantigen reactivity, marked heterogeneity, and rare public epitopes (<1% of enriched peptides) compared to controls.

Study Design

Type

Case-Control

Structured PICO

P
Population
Children with acute rheumatic fever, uncomplicated Strep A pharyngitis, and matched healthy controls.
E
Exposure
Phage immunoprecipitation sequencing (PhIP-Seq) with the HuScan library
C
Comparator
Sera from children with uncomplicated Strep A pharyngitis and matched healthy controls
O
Outcome
Autoantigen reactivity and identification of autoantigenssurrogate

PhIP-Seq reveals marked heterogeneity and a global increase in autoantigen reactivity in acute rheumatic fever, identifying new autoantigens like PPP1R12B.

Abstract

Acute rheumatic fever (ARF) and associated rheumatic heart disease are serious sequelae after infection with group A Streptococcus (Strep A). Autoantibodies are thought to contribute to pathogenesis, with deeper exploration of the autoantibody repertoire needed to improve mechanistic understanding and identify new biomarkers. Phage immunoprecipitation sequencing (PhIP-Seq) with the HuScan library (>250,000 overlapping 90-mer peptides spanning the human proteome) was utilized to analyze autoreactivity in sera from children with ARF, uncomplicated Strep A pharyngitis, and matched healthy controls. A global proteome-wide increase in autoantigen reactivity was observed in ARF, as was marked heterogeneity between patients. Public epitopes, common between individuals with ARF were rare, and comprised less than 1% of all enriched peptides. Differential analysis identified both unknown and previously identified ARF autoantigens, including PPP1R12B, a myosin phosphatase complex regulatory subunit expressed in cardiac muscle, and members of the collagen protein family, respectively. Pathway analysis found antigens from the disease-relevant processes encompassing sarcomere and heart morphogenesis were targeted. In sum, PhIP-Seq has substantially expanded the spectrum of autoantigens in ARF, and reveals the rarity of public epitopes in the disease. It provides further support for the role of epitope spreading in pathogenesis and has identified PPP1R12B as an enriched autoantigen.

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Cite This Study

McGregor et al. (2025) conducted a case-control in Acute rheumatic fever. Acute rheumatic fever vs. Uncomplicated Strep A pharyngitis and matched healthy controls was evaluated on Autoantigen reactivity. Acute rheumatic fever was associated with a global proteome-wide increase in autoantigen reactivity, marked heterogeneity, and rare public epitopes (<1% of enriched peptides) compared to controls.

synapsesocial.com/papers/6aa3aee4401b0278c3c976a6https://doi.org/10.1172/jci.insight.196619
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