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March 29, 2026Journal of Proteome Research0 citationsOpen Access

A Multiplexed Quantitative Analysis of Germline Single Amino Acid Variants by Targeted Proteomics in Nondepleted Human Plasma

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PDPanshak DakupTLTai‐Tu LinSSSoumyadeep Sarkar

Key Points

  • This research aims to quantify germline single amino acid variants (SAAVs) in human plasma to enhance biomarker development.
  • Developed a multiplexed LC-SRM assay to monitor wild-type and variant peptide pairs.
  • Optimized assay for precision, linearity, stability, and calibration.
  • Validated target identifications with SNP genotyping at over 99% accuracy.
  • Characterized concentrations of peptide pairs in healthy individual plasma samples.
  • Observed significantly lower concentrations of wild-type peptides in the presence of variant peptides.
  • In CFB, R32Q variant had a significantly lower concentration compared to R32W and wild-type species.
  • Distinguished homozygosity and heterozygosity of SAAV presence through concentration levels.

Abstract

Single amino acid variants (SAAVs) in protein sequences are often a direct result of single-nucleotide polymorphisms (SNPs). Certain germline SAAVs have shown biological relevance in different disease conditions but lack precise quantification in circulation, which could hinder functional investigations and progress in biomarker development. Here, we have developed a multiplexed liquid chromatography-selected reaction monitoring (LC-SRM) assay that monitors 5 wild-type and variant peptide pairs (Complement Factor B: CFB-R32Q/R32W, Clusterin: CLU-N317H, Fetuin B: FETUB-K360R, and Kininogen: KNG1-L212P) in nondepleted human plasma. The assay was optimized for imprecision, linearity, stability, and calibration assessments with CVs of under 20%. The wild-type and variant peptide pairs were characterized in a set of healthy individual plasma samples. These target identifications were also validated by SNP genotyping with more than 99% accuracy. For all protein targets, we observed significantly lower concentrations of WT species in the presence variant peptides. In CFB, the concentration of R32Q was significantly lower than its counterpart R32W variant and WT species. Furthermore, our results distinguished phenotypes of homozygosity and heterozygosity of the SAAV presence through direct concentration level characterization. These findings provide some insights into how SAAVs affect quantitative assessments of target peptides. The assay demonstrates a platform for proteogenomic analyses with potential applications in both research and clinical settings.

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Cite This Study

Dakup et al. (2026) studied this question.

synapsesocial.com/papers/69c8c15ade0f0f753b39bd60https://doi.org/10.1021/acs.jproteome.5c00928
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