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Discovery of antimicrobial peptides clostrisin and cellulosin from Clostridium: insights into their structures, co-localized biosynthetic gene clusters, and antibiotic activity.
Alejo Hernandez, Moisés Alejandro; Villavicencio Sánchez, Katia Pamela; Sánchez Morales, Rosendo; Hernández-Magro Gil, Karla Georgina; Moreno-Gutiérrez, David Silverio; Sanchez-Rueda, Eddie Guillermo; Teresa-Cruz, Yanet; Choi, Brian; Hernández Garcia, Armando; Romero-Rodríguez, Alba; Juárez, Oscar; Martínez-Caballero, Siseth; Figueroa, Mario; Ceapa, Corina-Diana.
Affiliation
  • Alejo Hernandez MA; Laboratory of Microbiology, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Villavicencio Sánchez KP; Laboratory of Microbiology, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Sánchez Morales R; Laboratory of Microbiology, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Hernández-Magro Gil KG; Laboratory of Microbiology, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Moreno-Gutiérrez DS; Laboratory of Microbiology, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Sanchez-Rueda EG; Biomolecular Engineering and Bionanotechnology Laboratory, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Teresa-Cruz Y; Biomolecular Engineering and Bionanotechnology Laboratory, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Choi B; Laboratory A-107, Biomedical Research Institute, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Hernández Garcia A; Department of Chemical and Biological Engineering, Chemistry and Molecular Biology, Princeton University, Princeton, NJ, USA.
  • Romero-Rodríguez A; Biomolecular Engineering and Bionanotechnology Laboratory, Institute of Chemistry, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Juárez O; Laboratory A-107, Biomedical Research Institute, National Autonomous University of Mexico , Mexico City, 04510, Mexico.
  • Martínez-Caballero S; Department of Biological Sciences, Illinois Institute of Technology, Chicago, Illinois 60616.
  • Figueroa M; Institute of Chemistry, National Autonomous University of Mexico, Mexico City, 04510, Mexico.
  • Ceapa CD; Facultad de Química, Universidad Nacional Autónoma de México (UNAM), Ciudad de México, 04510, México.
Beilstein J Org Chem ; 20: 1800-1816, 2024.
Article in En | MEDLINE | ID: mdl-39109298
ABSTRACT
Antimicrobial resistance presents a substantial threat to global public health, demanding urgent attention and action. This study focuses on lanthipeptides, ribosomally encoded peptides that display significant structural diversity and hold promising potential as antibiotics. Genome mining was employed to locate biosynthetic gene clusters (BGCs) containing class II lanthipeptide synthetases encoded by lanM genes. A phylogenetic study analyzing homologous sequences of functional LanM sequences revealed a unique evolutionary clade of 17 LanM proteins associated with 12 Clostridium bacterial genomes. In silico exploration identified nine complete BGCs, including one super-cluster containing two co-localized operons from Clostridium cellulovorans 743B, that encode for two new peptides named clostrisin and cellulosin. Each operon was heterologously expressed in Escherichia coli. Molecular weights associated with the expected post-translational modifications of the purified lanthipeptide were confirmed by MS-MS/MS analysis for cellulosin, while clostrisin was not post-translationally modified. Both peptides demonstrated antimicrobial activity against multidrug-resistant bacteria, such as a clinical strain of Staphylococcus epidermidis MIQ43 and Pseudomonas aeruginosa PA14. This is the first report of lanthipeptides from the Clostridium genus produced with its native biosynthetic machinery, as well as chemically and biologically characterized. This study showcases the immense potential of genome mining in identifying new RiPP synthetases and associated bioactive peptides.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Beilstein J Org Chem Year: 2024 Document type: Article Affiliation country: Mexico Country of publication: Germany

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Beilstein J Org Chem Year: 2024 Document type: Article Affiliation country: Mexico Country of publication: Germany