Proteomics

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Characterizing Peptidase Activity of Barley Endoprotease B in Complex Technical Matrices of the Beer Brewing Process


ABSTRACT: Barley cysteine endoprotease B (HvEPB) is an important enzyme in plant biology and food production. Pilot-scale fed-batch fermentation with Komagataella phaffii in minimal FM22 medium enabled controlled recombinant HvEPB (r-HvEPB) secretion. Peptidomics across four technological brewing matrices - raw barley, malt, wort and beer - revealed hydrophobic P2 preference (V, L, Y) and heterogeneous P1 selection (T, Q, G), with certain residues disfavoured (S, A, G at P2; P, I, L at P1). Cleavage motifs shifted depending on the underlying matrix, primarily reflecting differences in substrates properties and availability. Immunogenic gluten peptides, particularly from C- and B-hordeins, were efficiently cleaved. Enzyme-linked immunosorbent assay confirmed 85-89% gluten reduction across all four matrices under controlled in vitro incubation. r-HvEPB hydrolysed brewing-relevant hordeins, α/β-amylases, while LTP I and serpin Z4 were less cleaved. Weighted motif analysis and inhibition trials underscored HvEPB's pivotal role as a broad-specificity endoprotease in malt-based systems, with r-HvEPB showing significantly higher gluten hydrolysis than endogenous malt proteases.

INSTRUMENT(S):

ORGANISM(S): Hordeum Vulgare Subsp. Vulgare Komagataella Phaffii

SUBMITTER: Christina Ludwig  

LAB HEAD: Christina Ludwig

PROVIDER: PXD067323 | Pride | 2026-07-28

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
BBM_895_P382_01_FRH_001.raw Raw
BBM_895_P382_01_FRH_002.raw Raw
BBM_895_P382_01_FRH_003.raw Raw
BBM_895_P382_01_FRH_004.raw Raw
BBM_895_P382_01_FRH_005.raw Raw
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Characterising peptidase activity of barley endoprotease B in complex technical matrices of the brewing process.

Kerpes Roland R   Ludwig Christina C   Dionisio Giuseppe G   Brinch-Pedersen Henrik H   Becker Thomas T  

Food chemistry 20260418


Barley cysteine endoprotease B (HvEPB) is an important enzyme in plant biology and food production. Pilot-scale fed-batch fermentation with Komagataella phaffii in minimal FM22 medium enabled controlled recombinant HvEPB (r-HvEPB) secretion. Peptidomics across four technological brewing matrices - raw barley, malt, wort and beer - revealed hydrophobic P2 preference (V, L, Y) and heterogeneous P1 selection (T, Q, G), with certain residues disfavoured (S, A, G at P2; P, I, L at P1). Cleavage motif  ...[more]

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