SpotLight Proteomics—A IgG-Enrichment Phenotype Profiling Approach with Clinical Implications

peer-reviewed · International Journal of Molecular Sciences · 2019

peer-reviewed · International Journal of Molecular Sciences · 2019. Susanna L. Lundström et al. Sarcoidosis is a systemic interstitial lung disease of unknown aetiology. Less invasive diagnostics are…
Date 2019-05-01
Type peer-reviewed
Venue International Journal of Molecular Sciences
Publisher MDPI AG
Contribution downstream-application
DOI 10.3390/ijms20092157
Citations (OpenAlex) 13

Abstract

Sarcoidosis is a systemic interstitial lung disease of unknown aetiology. Less invasive diagnostics are needed to decipher disease pathology and to distinguish sub-phenotypes. Here we test if SpotLight proteomics, which combines de novo MS/MS sequencing of enriched IgG and co-extracted proteins with subsequent label-free quantification of new and known peptides, can differentiate controls and sarcoidosis phenotypes (Löfgrens and non-Löfgrens syndrome, LS and nonLS). Intra-individually matched IgG enriched from serum and bronchial lavage fluid (BALF) from controls (n = 12), LS (n = 11) and nonLS (n = 12) were investigated. High-resolution mass-spectrometry SpotLight proteomics and uni- and multivariate-statistical analyses were used for data processing. Major differences were particularly observed in control-BALF versus sarcoidosis-BALF. However, interestingly, information obtained from BALF profiles was still present (but less prominent) in matched serum profiles. By using information from orthogonal partial least squares discriminant analysis (OPLS-DA) differentiating 1) sarcoidosis-BALF and control-BALF and 2) LS-BALF vs. nonLS-BALF, control-serum and sarcoidosis-serum (p = 0.0007) as well as LS-serum and nonLS-serum (p = 0.006) could be distinguished. Noteworthy, many factors prominent in identifying controls and patients were those associated with Fc-regulation, but also features from the IgG-Fab region and novel peptide variants. Differences between phenotypes were mostly IgG-specificity related. The results support the analytical utility of SpotLight proteomics which prospectively have potential to differentiate closely related phenotypes from a simple blood test.

Authors

  1. Susanna L. Lundström · Karolinska Institutet
  2. Tina Heyder · Karolinska Institutet
  3. Emil Wiklundh · Karolinska Institutet
  4. Bo Zhang · Karolinska Institutet
  5. Anders Eklund · Karolinska Institutet
  6. Johan Grunewald · Karolinska Institutet
  7. Roman A. Zubarev · Cornell University, Karolinska Institutet, Uppsala University

Methods and tools

  • SpotLight proteomics: Combines de novo MS/MS sequencing of enriched antibodies and co-extracted proteins with label-free quantification of the new peptides, uncovering a hidden blood proteome useful for patient stratification.

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