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Diversification of yeast proteins as an approach for the development of sustainable food systems

  • Hale İnci Öztürk*
  • , Sevda Dere
  • , Begüm Denktaş
  • , Osman Sağdıç
  • , Enes Dertli
  • *Corresponding author for this work
  • Yildiz Technical University
  • Esenyurt Istanbul University

Research output: Contribution to journalReview articlepeer-review

Abstract

Despite growing trend in sustainable protein sources, yeast proteins have mainly been explored as a source of bioactive peptides using a monospecies and general protein approach. The contribution of highly abundant protein fractions in the yeast proteome to peptide formation remains insufficiently investigated, limiting a comprehensive understanding of yeast proteins as optimized peptide sources. The current review presents a systematic analysis of yeast proteins as emerging protein sources and evaluates the suitability of high-abundance proteins as bioactive peptide precursors by in silico techniques. Moreover, brewery by-product and single-cell yeast protein approaches are compared in terms of composition and techno-functionality whereas peptide formation mechanisms (in situ and ex situ) and regulatory aspects for food applications are also addressed. Cytoplasmic metabolic proteins, particularly glycolytic enzymes (GAPDH), are identified as highly abundant fractions of the yeast proteome. Proteins associated with cell and organelle membranes also contribute substantially based on cellular localization. These findings imply that such proteins may act as key precursors of yeast-derived bioactive peptides. In silico hydrolysis with Alcalase suggests a tendency toward the generation of short-chain peptides (3–11/14 aa), which may support biological activity. Moreover, peptide profiles appear to vary across yeast species, highlighting the role of species diversity in peptide generation. While single-cell yeast protein allows more controlled production than brewery by-products, nucleic acid content in both may limit applications. Overall, yeast proteins appear to be metabolically adaptable and species-diverse sources for various biological peptides.

Original languageEnglish
Article number119959
JournalFood Research International
Volume242
DOIs
Publication statusPublished - 31 Oct 2026

Bibliographical note

Publisher Copyright:
© 2026 Elsevier Ltd

Keywords

  • Alcalase hydrolysis
  • Brewery by-product
  • Glycolytic enzymes
  • Peptides
  • Protein abundance
  • Proteome diversity
  • Single-cell protein

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