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Updated: Feb 2, 2026

A Toxicological and Ecotoxicological Assay Based on Mussel (Mytilus galloprovincialis) Hemocytes Motility
Published on: December 13, 2024
Protamine-like proteins have bactericidal activity. The first evidence in Mytilus galloprovincialis
Rosaria Notariale1, Adriana Basile1, Elena Montana1
1Dipartimento di Biologia, Università degli Studi di Napoli Federico II. Napoli, Italy.
Abstract:
The major acid-soluble protein components of the mussel Mytilus galloprovincialis sperm chromatin consist of the protamine-like proteins PL-II, PL-III and PL-IV, an intermediate group of sperm nuclear basic proteins between histones and protamines. The aim of this study was to investigate the bactericidal activity of these proteins since, to date, there are reports on bactericidal activity of protamines and histones, but not on protamine-like proteins. We tested the bactericidal activity of these proteins against Gram-positive bacteria: Enterococcus faecalis and two different strains of Staphylococcus aureus, as well as Gram-negative bacteria: Proteus mirabilis, Proteus vulgaris, Pseudomonas aeruginosa, Salmonella typhmurium, Enterobacter aerogenes, Enterobacter cloacae, and Escherichia coli. Clinical isolates of the same bacterial species were also used to compare their sensitivity to these proteins. The results show that Mytilus galloprovincialis protamine-like proteins exhibited bactericidal activity against all bacterial strains tested with different minimum bactericidal concentration values, ranging from 15.7 to 250 µg/mL. Furthermore, these proteins were active against some bacterial strains tested that are resistant to conventional antibiotics. These proteins showed very low toxicity as judged by red blood cell lysis and viability MTT assays and seem to act both at the membrane level and within the bacterial cell. We also tested the bactericidal activity of the product obtained from an in vitro model of gastrointestinal digestion of protamine-like proteins on a Gram-positive and a Gram-negative strain, and obtained the same results with respect to undigested protamine-like proteins on the Gram-positive bacterium. These results provide the first evidence of bactericidal activity of protamine-like-proteins.
Insights
Mussel sperm protamine-like proteins show broad-spectrum bactericidal activity against Gram-positive and Gram-negative bacteria, including antibiotic-resistant strains. These proteins exhibit low toxicity and potential therapeutic applications.
Area of Science:
- Marine biology
- Biochemistry
- Antimicrobial research
Background:
- Mussel sperm chromatin contains protamine-like proteins (PLPs) that are structurally intermediate between histones and protamines.
- While protamines and histones exhibit known antimicrobial properties, the bactericidal activity of PLPs remains unexplored.
Purpose of the Study:
- To investigate the bactericidal activity of Mytilus galloprovincialis protamine-like proteins (PL-II, PL-III, PL-IV).
- To assess the toxicity and mechanism of action of these mussel PLPs.
- To evaluate the activity of digested PLPs against bacteria.
Main Methods:
- Testing bactericidal activity of purified Mytilus galloprovincialis PLPs against a panel of Gram-positive and Gram-negative bacteria, including clinical isolates.
- Assessing protein toxicity using red blood cell lysis and MTT viability assays.
- Evaluating the bactericidal effect of in vitro gastrointestinal digests of PLPs.
Main Results:
- Mytilus galloprovincialis PLPs demonstrated significant bactericidal activity against all tested bacterial strains, with minimum bactericidal concentrations ranging from 15.7 to 250 µg/mL.
- The PLPs were effective against antibiotic-resistant bacterial strains.
- The proteins exhibited low toxicity and appeared to act both on the bacterial membrane and intracellularly.
- Digested PLPs retained bactericidal activity against Gram-positive bacteria.
Conclusions:
- This study provides the first evidence of bactericidal activity for protamine-like proteins.
- Mytilus galloprovincialis PLPs represent a promising source of novel antimicrobial agents with potential therapeutic applications.
- The findings suggest PLPs could be developed as alternatives to conventional antibiotics.
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