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March 29, 2026Sustainable Food Proteins0 citationsOpen Access

Lupin Species and Protein Fraction Type Affect the Conformational State and Functional Performance of the Proteins

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SCStanley ChukwuejimRARotimi E. Aluko

Key Points

  • The aim is to explore how different lupin species and protein fractions affect their structural and functional properties.
  • Examined structural properties of albumin, globulin, and glutelin fractions from white and blue lupin seeds.
  • Analyzed solubility curves, amino acid composition, and protein digestibility under varying pH and concentrations.
  • Utilized far-UV circular dichroism to assess protein structure and stability in emulsions.
  • White lupin globulin had an amino acid score exceeding 100%, indicating high nutritional quality.
  • Blue lupin glutelin showed the highest protein digestibility and significant surface hydrophobicity.
  • WLGlo stabilized emulsions produced smaller oil droplets, improving product texture, while all fractions exhibited excellent foaming properties.

Abstract

ABSTRACT This study investigated the effects of lupin species, pH, and protein concentration on the structural and functional properties of albumin, globulin, and glutelin protein fractions isolated from white ( Lupinus albus ) and blue ( Lupinus angustifolius ) lupin seeds. The globulin and glutelin fractions exhibited characteristic pH‐dependent U‐shaped solubility curves, with minimum solubility near pH 5. Amino acid analysis revealed that white lupin globulin (WLGlo) was the only fraction not limited in sulfur‐containing amino acids (methionine + cysteine: 107% amino acid score). Blue lupin glutelin (BLGlu) demonstrated high surface hydrophobicity (3924.1), in vitro protein digestibility (92.44%), and the highest intrinsic fluorescence intensity at pH 3, indicating a conserved but enzyme‐accessible protein conformation. Far‐UV circular dichroism analysis revealed that white lupin albumin (WLAlb) possessed the highest α‐helix content at pH 7 (23%) and pH 9 (18%), reflecting a more flexible conformation. Emulsions stabilized by WLGlo at pH 3, 7, and 9 had smaller oil droplet sizes (~4–7 μm) than most of the other protein fractions. All fractions displayed excellent foaming properties, with stability exceeding 85%, and glutelin fractions showing particularly good (50%–60%) foaming capacity at pH 5. These findings establish clear structure–function relationships and demonstrate the potential of lupin protein fractions as high‐performance ingredients for diverse food applications, with each fraction offering specific advantages based on nutritional quality, structural characteristics, and functional properties.

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Cite This Study

Chukwuejim et al. (2026) studied this question.

synapsesocial.com/papers/69c8c30dde0f0f753b39d9dahttps://doi.org/10.1002/sfp2.70062
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