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Published on: May 5, 2014
Triintsin, a human pathogenic fungus-derived defensin with broad-spectrum antimicrobial activity
Bingzheng Shen1, Jinchun Song2, Yonghui Zhao3
1State Key Laboratory of Virology, Modern Virology Research Center, College of Life Sciences, Wuhan University, Wuhan 430072, China; Department of pharmacy, Renmin Hospital, Wuhan University, Wuhan 430060, China.
Abstract:
Since there is a symbiotic and competitive relationship between microorganisms in the same ecological niche, fungal defensins have been found to be important resources for antimicrobial peptides. Here, a fungal defensin, triintsin, was characterized in a clinical isolate of Trichophyton interdigitale from a patient with onychomycosis. The comparison of its genomic and mRNA sequences showed the gene organization and structure of three coding exons separated by two introns. The precursor peptide of triintsin contained 85 amino acid residues, which were composed of three parts including an N-terminal signal domain of 21 residues, a pro-peptide of 47 residues that ended at lysine-arginine and a mature peptide of 38 residues at the C-terminus. The 3D-structure established by homology modeling revealed that triintsin presented a representative typical cysteine-stabilized α-helical and β-sheet fold. The reductive linear peptide of triintsin was obtained by chemical synthesis. After cyclization to form three pairs of disulfide bonds, the oxidative-type peptide displayed broad-spectrum antimicrobial activity against both gram-positive and gram-negative bacteria but also showed anti-fungal activity. Moreover, triintsin can effectively inhibit the growth of clinical strains. Altogether, the peptide is a human pathogenic fungus-derived defensin with broad-spectrum antimicrobial activity.
Insights
Researchers characterized triintsin, a fungal defensin from Trichophyton interdigitale, revealing its structure and broad-spectrum antimicrobial activity against bacteria and fungi. This defensin effectively inhibits clinical strains, offering potential therapeutic applications.
Area of Science:
- Mycology
- Microbiology
- Biochemistry
Background:
- Fungal defensins are crucial antimicrobial peptides due to microbial competition.
- Trichophyton interdigitale is a common cause of onychomycosis.
Purpose of the Study:
- To characterize the fungal defensin triintsin from a clinical isolate of Trichophyton interdigitale.
- To investigate the structure, synthesis, and antimicrobial activity of triintsin.
Main Methods:
- Gene and mRNA sequencing to determine gene organization.
- Homology modeling for 3D structure prediction.
- Chemical synthesis and disulfide bond formation for peptide activity testing.
Main Results:
- Triintsin gene comprises three coding exons and two introns.
- Homology modeling showed a typical cysteine-stabilized α-helical and β-sheet fold.
- Synthesized triintsin exhibited broad-spectrum antimicrobial activity against Gram-positive and Gram-negative bacteria, and fungi, including clinical strains.
Conclusions:
- Triintsin is a novel fungal defensin with a conserved structural fold.
- Triintsin demonstrates potent broad-spectrum antimicrobial and antifungal activity.
- This peptide holds promise as a therapeutic agent against pathogenic fungi and bacteria.
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