Grape seed-derived procyanidin alleviates gliadin p31–43-induced intestinal epithelial stress associated with ATF4 and autophagy–iron homeostasis

Gluten-derived gliadin p31–43 is a digestion-resistant peptide implicated in intestinal epithelial stress, but its mechanism of intestinal epithelial injury remains unclear. This study investigated the relationships among p31–43-induced endoplasmic reticulum (ER)–mitochondrial stress responses, autophagic flux impairment, iron dyshomeostasis, ferroptosis-related injury, and epithelial barrier-related alterations, and evaluated the protective effects of grape seed-derived procyanidin (PC) and their association with activating transcription factor 4 (ATF4)-related signaling. In Caco-2 cells, p31–43 decreased mitochondrial membrane potential, increased mitochondrial reactive oxygen species(mtROS) and Fe²⁺ accumulation, activated protein kinase R-like endoplasmic reticulum kinase (PERK)–ATF4–C/EBP homologous protein (CHOP) signaling, impaired autophagic flux, disrupted iron homeostasis, and enhanced lipid peroxidation. MitoTEMPO or 4-phenylbutyric acid (4-PBA) partially reversed these abnormalities. ATF4 knockdown aggravated epithelial injury, whereas ATF4 overexpression alleviated it. PC attenuated p31–43-induced cellular stress, improved barrier-related markers, and increased ATF4 expression, while these protective effects were markedly weakened after ATF4 knockdown. In mice, PC improved gliadin-induced intestinal mucosal injury. These findings support PC as a food-derived polyphenol for maintaining gluten-related epithelial barrier homeostasis.

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Journal
npj Science of Food
Published
2026-09-22
DOI
https://doi.org/10.1038/s41538-026-01147-1
Primary Topic
Celiac Disease Research and Management
Type
article
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article

Grape seed-derived procyanidin alleviates gliadin p31–43-induced intestinal epithelial stress associated with ATF4 and autophagy–iron homeostasis

Qiuying Yu, Zhigang Liu, Ke Yue, Xing Zhang et al.
npj Science of Food
Celiac Disease Research and Management
article

Grape seed-derived procyanidin alleviates gliadin p31–43-induced intestinal epithelial stress associated with ATF4 and autophagy–iron homeostasis

Qiuying Yu, Zhigang Liu, Ke Yue, Xing Zhang, Kun Miao He, LinLin Chen, Na Wang, GaiPing Zhang
article en

Abstract

Gluten-derived gliadin p31–43 is a digestion-resistant peptide implicated in intestinal epithelial stress, but its mechanism of intestinal epithelial injury remains unclear. This study investigated the relationships among p31–43-induced endoplasmic reticulum (ER)–mitochondrial stress responses, autophagic flux impairment, iron dyshomeostasis, ferroptosis-related injury, and epithelial barrier-related alterations, and evaluated the protective effects of grape seed-derived procyanidin (PC) and their association with activating transcription factor 4 (ATF4)-related signaling. In Caco-2 cells, p31–43 decreased mitochondrial membrane potential, increased mitochondrial reactive oxygen species(mtROS) and Fe²⁺ accumulation, activated protein kinase R-like endoplasmic reticulum kinase (PERK)–ATF4–C/EBP homologous protein (CHOP) signaling, impaired autophagic flux, disrupted iron homeostasis, and enhanced lipid peroxidation. MitoTEMPO or 4-phenylbutyric acid (4-PBA) partially reversed these abnormalities. ATF4 knockdown aggravated epithelial injury, whereas ATF4 overexpression alleviated it. PC attenuated p31–43-induced cellular stress, improved barrier-related markers, and increased ATF4 expression, while these protective effects were markedly weakened after ATF4 knockdown. In mice, PC improved gliadin-induced intestinal mucosal injury. These findings support PC as a food-derived polyphenol for maintaining gluten-related epithelial barrier homeostasis.

npj Science of Food
Peking University (CN), Henan University of Technology (CN), Henan Agricultural University (CN), Northwest A&F University (CN)
Zero hunger
Openalex Percentile: Top 9%
Celiac Disease Research and Management
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Grape seed-derived procyanidin alleviates gliadin p31–43-induced intestinal epithelial stress associated with ATF4 and autophagy–iron homeostasis — Qiuying Yu, Zhigang Liu, et al. · npj Science of Food (2026) | TGRS Research Map | TGRS