Quantitative proteomics based bioactive proteins discovery and quality control of medicinal leeches
Basic science published in J Ethnopharmacol (2023)
Abstract
ETHNOPHARMACOLOGICAL RELEVANCE: Leech, a classical traditional Chinese medicine for promoting blood circulation and removing blood stasis, is mainly used in the clinical treatment of cardiovascular and cerebrovascular diseases. The discovery of activity proteins or peptides in the dead and dried medicinal leech is an important task with great challenges. AIM OF THE STUDY: The aim of this study was to provide a basic proteome profile and help further discover active proteins and quality control for medicinal leeches, which would also provide insight into the research of animal medicines. MATERIALS AND METHODS: Seventeen batches of dried medicinal leeches covering three species were collected from medicinal markets, which were authenticated by DNA barcoding. Then the proteome of different species leeches was profiled to reveal the significantly different proteins using label-free proteomics. The characteristic peptides were screened out based on biological pathways analysis, which were further absolutely quantified using the developed stable isotope-labeled based parallel reaction monitoring method. RESULTS: Seventeen batches of leech materials were Whitmania pigra Whitman (WP), Whitmania laevis Whitman (WL) and Poecilobdella manillensis Lesson (PM), respectively. A total of 1,035 proteins (452 in WP, 425 in WL and 158 in PM) were identified. Among them, 90 overlapping proteins were mainly concentrated in diverse metabolic pathways and primarily localized in the cytoplasm and mitochondrial inner membrane, which mainly related to ATP binding, catalytic activity and structural molecular activity. In total of 51 uniquely expressed proteins (21 in WP, 23 in WL and 7 in PM), associated with multiple key signaling pathways, including Rap1, cGMP-PKG, PI3K-Akt, Wnt and HIF-1, etc., relevant to treating cardiovascular diseases, diabetes, cancer and even a variety of neurodegenerative diseases. Three proteins with potential bioactivities, including Neurohemerythrin, Hirudin and Eglin C, were selected as the quality makers and then quantified based on the characteristic peptides. CONCLUSIONS: This work profiled the proteome of three species of leeches, and addressed potential active proteins of the medicinal leech, which would help to provide the potential molecular mechanisms involved in disease treatment. The proteomics-based approach developed in this work is not only useful for the discovery of proteins with potential bioactivities but also helpful for the bioactivity relevant quality control of animal medicines.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Summary
Label-free proteomics of 17 medicinal leech batches (W. pigra, W. laevis, P. manillensis) identifies 1035 proteins with 51 species-specific markers; Neurohemerythrin, Hirudin, Eglin C selected as quality markers via PRM-MS quantification.
Why This Matters for Hirudotherapy
This study profiled the proteome of seventeen batches of dried medicinal leeches across three species (Whitmania pigra, Whitmania laevis, and Poecilobdella manillensis) using DNA barcoding authentication and label-free quantitative proteomics, identifying 1,035 proteins and 51 uniquely expressed species-specific proteins associated with signaling pathways including Rap1, cGMP-PKG, PI3K-Akt, Wnt, and HIF-1. Three proteins — neurohemerythrin, hirudin, and eglin C — were proposed as quality markers. For ASH, this provides a foundational proteomic resource for understanding bioactive leech proteins and establishing quality control standards relevant to standardization of leech-derived materials. Caveat: this is a proteomics profiling and analytical study; functional bioactivity was inferred from pathway analysis rather than directly validated, and clinical relevance is not established.
Citation
Quantitative proteomics based bioactive proteins discovery and quality control of medicinal leeches.
Li FG et al. · Journal of ethnopharmacology, 2023
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