Shiitake, Hua Gu · 2026 · Journal Article
High relevanceExcavation of Lentinula edodes-stem-derived peptides doubly inhibiting DPP-IV and ACE activity.
Lentinula edodes
Key points
- Type Ⅱ diabetes and hypertension often coexist, affecting each other
- Suppressing dipeptidyl peptidase-4 (DPP-Ⅳ) and angiotensin-I-converting enzyme (ACE) activity is crucial for managing these conditions
- Lentinula edodes-stem protein, rich in hydrophobic amino acids, has potential for creating DPP-Ⅳ and ACE inhibitory peptides
- This study used this protein, combined with databases, to derive peptides that exhibit dual inhibition of DPP-Ⅳ and ACE activity via enzymatic hydrolysis by Bacillus subtilis protease
- Following the sequencing of fraction F1-2, screening, and solid-phase synthesis, three novel peptides (EW-1, WR-2, and LP-3) exhibiting >60% inhibition of both DPP-Ⅳ and ACE at 1 mg/mL. These peptides showed no significant toxicity to Caco-2 cells, indicating safety
- These findings suggest that peptides derived from the stem of Lentinula edodes are promising candidates for health products targeting type Ⅱ diabetes and hypertension
Metadata-grounded summary
Citation abstract
Type Ⅱ diabetes and hypertension often coexist, affecting each other. Suppressing dipeptidyl peptidase-4 (DPP-Ⅳ) and angiotensin-I-converting enzyme (ACE) activity is crucial for managing these conditions. Lentinula edodes-stem protein, rich in hydrophobic amino acids, has potential for creating DPP-Ⅳ and ACE inhibitory peptides. This study used this protein, combined with databases, to derive peptides that exhibit dual inhibition of DPP-Ⅳ and ACE activity via enzymatic hydrolysis by Bacillus subtilis protease. The most active fraction (F1-2) had IC50 values of 0.0910 mg/mL (DPP-Ⅳ) and 0.0189 mg/mL (ACE). Following the sequencing of fraction F1-2, screening, and solid-phase synthesis, three novel peptides (EW-1, WR-2, and LP-3) exhibiting >60% inhibition of both DPP-Ⅳ and ACE at 1 mg/mL. These peptides showed no significant toxicity to Caco-2 cells, indicating safety. These findings suggest that peptides derived from the stem of Lentinula edodes are promising candidates for health products targeting type Ⅱ diabetes and hypertension.
Citation
Zheng Q, Kang Q, Zhang H, Tu L, Yu Y, Yang J, et al. (2026). Excavation of Lentinula edodes-stem-derived peptides doubly inhibiting DPP-IV and ACE activity. Bioscience, biotechnology, and biochemistry https://doi.org/10.1093/bbb/zbag026 PMID: 41665866
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