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Cordyceps, Caterpillar Fungus · 2026 · Journal Article

Medium relevance

A Potent Fibrinolytic Enzyme Alp1 from Cordyceps militaris: From Sequence-Function Characterization to in Vivo Antithrombotic Application.

Ophiocordyceps sinensis

Energy & fatigueRespiratory
SpeciesCordyceps, Caterpillar Fungus
JournalJournal of agricultural and food chemistry
Year2026

Key points

  • Alp1, a potent fibrinolytic enzyme from Cordyceps militaris CM03, was characterized and identified as an S8 family alkaline serine protease
  • Molecular simulations revealed that the pro-peptide enhances mature peptide flexibility, which is crucial for functional folding and catalytic accessibility
  • Alp1 exhibits optimal activity at 60 °C and pH 7-11, yielding an activity of 1779 U/mL. This activity is enhanced by Ca 2+ and Mn 2+, but inhibited by specific metal ions (Fe 3+, Fe 2+, Cu 2+ ) and protease inhibitors (PMSF, TPCK)
  • Alp1 directly degrades fibrin and all three fibrinogen chains (α, β, γ)
  • In vitro and in vivo (rat thrombosis model) assays demonstrated its potent thrombolytic and anticoagulant properties, outperforming urokinase and matching streptokinase efficacy
  • Thus, Alp1 warrants further investigation as a potential candidate for next-generation thrombolytic applications and functional food development

Metadata-grounded summary

Citation abstract

Alp1, a potent fibrinolytic enzyme from Cordyceps militaris CM03, was characterized and identified as an S8 family alkaline serine protease. Molecular simulations revealed that the pro-peptide enhances mature peptide flexibility, which is crucial for functional folding and catalytic accessibility. Furthermore, heterologous expression confirmed its role as an essential intramolecular chaperone. Alp1 exhibits optimal activity at 60 °C and pH 7-11, yielding an activity of 1779 U/mL. This activity is enhanced by Ca 2+ and Mn 2+, but inhibited by specific metal ions (Fe 3+, Fe 2+, Cu 2+ ) and protease inhibitors (PMSF, TPCK). Alp1 directly degrades fibrin and all three fibrinogen chains (α, β, γ). In vitro and in vivo (rat thrombosis model) assays demonstrated its potent thrombolytic and anticoagulant properties, outperforming urokinase and matching streptokinase efficacy. Thus, Alp1 warrants further investigation as a potential candidate for next-generation thrombolytic applications and functional food development.

Citation

Lin S, Tang W, Xie J, Ding L, Gu Y, Lin J, et al. (2026). A Potent Fibrinolytic Enzyme Alp1 from Cordyceps militaris: From Sequence-Function Characterization to in Vivo Antithrombotic Application. Journal of agricultural and food chemistry https://doi.org/10.1021/acs.jafc.6c02229 PMID: 41841572

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