Effect of heavy metal lead on anticoagulant activity of leech based on label-free quantitative proteomics
Proteomics study published in China Journal of Chinese Materia Medica (2021)
Abstract
Whitmania pigra is the most widely distributed species of leeches in the market. In this study, the effect of heavy metal lead pollution on the anticoagulant activity of Wh. pigra was studied and the potential mechanism was explored. Pb(NO_3)_2 was used to contaminate the breeding soil which was then used to rear Wh. pigra for 50 days(lead-contaminated group, LC group), and meanwhile the blank control group(CG group) was set. Proteins were extracted from the obtained leech samples, and the differentially expressed proteins between LC and CG groups were analyzed by label-free proteomics technology. In this study, a total of 152 differentially expressed proteins were screened out, of which 93 proteins were up-regulated and 59 proteins were down-regulated in LC group. Bioinformatics analysis showed that the biological processes enriched with the differentially expressed proteins were mainly vesicle-mediated transport and transport positive regulation; the enriched cell components were mainly endocytosis vesicles and apical plasma membrane; the enriched molecular functions mainly included carbohydrate binding. The differentially expressed proteins were enriched in 76 KEGG pathways, which mainly involved metabolic pathways, biosynthesis of secondary metabolites, and bacterial invasion of epithelial cells. In this study, two differentially expressed proteins with Antistasin domain were presumed, which provides reference for further exploring the regulatory mechanism and signal transduction underlying the effect of lead pollution on the anticoagulant activity of leech.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Zusammenfassung
Label-free quantitative proteomics study showing lead contamination significantly alters leech anticoagulant proteome — identifies affected proteins.
Warum dies für die Hirudotherapie relevant ist
Diese Studie verwendete markierungsfreie quantitative Proteomik, um den Effekt einer Schwermetall-Bleiverunreinigung auf die antikoagulatorische Aktivität von Whitmania pigra zu untersuchen, wobei 50 Tage lang in bleiverunreinigtem Boden aufgezogene Blutegel mit einer Blindkontrollgruppe verglichen wurden. Insgesamt wurden 152 differenziell exprimierte Proteine identifiziert (93 hochreguliert, 59 herunterreguliert in der bleibelasteten Gruppe), mit Anreicherung in Stoffwechselwegen, der Biosynthese von Sekundärmetaboliten und der bakteriellen Invasion von Epithelzellen; zwei differenziell exprimierte Proteine mit Antistasin-Domänen wurden als potenziell relevant für Veränderungen der antikoagulatorischen Aktivität identifiziert. Diese Arbeit ist für den Bereich der ASH relevant, da sie eine praxisrelevante Frage zu Qualität und Sicherheit anspricht – die Schwermetallbelastung aus der Umwelt –, die die therapeutische Wirksamkeit aus Blutegeln gewonnener Materialien beeinträchtigen könnte. Die Studie ist jedoch proteomisch und inferenziell, und die funktionelle Bedeutung der identifizierten Proteine für die antikoagulatorische Aktivität erfordert weitere gezielte Validierung.
Zitation
Effect of heavy metal lead on anticoagulant activity of leech based on label-free quantitative proteomics.
Xue M et al. · Zhongguo Zhong yao za zhi, 2021
Verwandter klinischer Kontext
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