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Updated: Nov 8, 2025

Antimicrobial Peptides Produced by Selective Pressure Incorporation of Non-canonical Amino Acids
Published on: May 4, 2018
Encrypted antimicrobial peptides from proteins present in the plasma of the millipede Rhinocricus sp
Paula J Segura-Ramírez1, Pedro Machado de Godoy2, Ivan N Avino3
1Laboratory for Applied Toxinology (LAT) - Center of Toxins, Immune-Response and Cell Signaling (CeTICS/CEPID), Butantan Institute (IBu), São Paulo 05503-900, Brazil; Post-Graduation Program Interunits in Biotechnology, USP/IBu/IPT, São Paulo 05508-900, Brazil.
Abstract:
Millipedes are among the most diverse and abundant arthropods in terrestrial environments. However, little is known about their innate immune response against invading pathogenic microorganisms, which is very intriguing considering that the evolutionary success of millipedes is largely due to this complex and primitive defense system, since it allowed them to colonize a wide variety of microhabitats characterized by their high microbial proliferation. Accordingly, the aim of the present work was to determine the presence of antimicrobial peptides in the hemolymph of the millipede Rhinocricus sp. In total, four native peptides with potent antimicrobial activity against different microorganisms, lack of cytotoxicity against Vero cells and lack of hemolytic effects against human erythrocytes were isolated and named RP40-16, RP40-19, RP40-20/1 and RP40-20/2. The analysis with bioinformatics tools suggested that these peptides may be encrypted in large proteins present in the plasma: Hemocyanin and thioester-containing protein. Considering these results, it can be said that millipede hemolymph represents a promising source of molecules with potential for the development of non-conventional antibiotics. Therefore, in order to have a clearer notion of the biotechnological potential and the role of these peptides in the innate immune response of Rhinocricus sp., future studies should focus on elucidating their mechanisms of action, as well as additional biological properties.
Insights
Millipede hemolymph contains four novel antimicrobial peptides (RP40-16, RP40-19, RP40-20/1, RP40-20/2) effective against pathogens. These peptides show potential for developing new antibiotics.
Area of Science:
- Zoology
- Immunology
- Biochemistry
Background:
- Millipedes are diverse terrestrial arthropods with a poorly understood innate immune system.
- Their evolutionary success is linked to a primitive defense system enabling colonization of diverse microhabitats.
- Understanding millipede immunity is crucial for discovering novel antimicrobial compounds.
Purpose of the Study:
- To identify and characterize antimicrobial peptides in the hemolymph of the millipede Rhinocricus sp.
- To assess the safety and efficacy of these isolated peptides.
Main Methods:
- Isolation and purification of native peptides from Rhinocricus sp. hemolymph.
- Antimicrobial activity assays against various microorganisms.
- Cytotoxicity assays using Vero cells and hemolytic assays using human erythrocytes.
- Bioinformatic analysis to predict peptide origins.
Main Results:
- Four native peptides (RP40-16, RP40-19, RP40-20/1, RP40-20/2) with potent antimicrobial activity were isolated.
- These peptides exhibited no cytotoxicity against Vero cells and no hemolytic effects on human erythrocytes.
- Bioinformatic analysis suggested peptides are encrypted within hemocyanin and thioester-containing proteins.
Conclusions:
- Millipede hemolymph is a promising source of novel antimicrobial molecules.
- The identified peptides hold potential for the development of non-conventional antibiotics.
- Further research is needed to elucidate their mechanisms of action and biological properties.
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