OT-CATH, a conserved antimicrobial peptide in Otariidae species, exhibits potent activity against gram-negative bacteria

ABSTRACT The rapid emergence of multidrug-resistant gram-negative bacteria necessitates the development of effective antimicrobial agents to combat antimicrobial resistance. Here, we identified and characterized OT-CATH, a conserved cathelicidin-family antimicrobial peptide derived from Otariidae species. OT-CATH exhibited potent bactericidal activity against gram-negative bacteria, particularly extended-spectrum β-lactamase-producing Escherichia coli , with rapid killing kinetics, potent antibiofilm activity, and no detectable resistance after 40 serial passages. Mechanistically, OT-CATH bound lipopolysaccharide, disrupted both the outer and inner bacterial membranes, and translocated into the cytoplasm to interact with bacterial DNA. Membrane disruption further triggered intracellular reactive oxygen species accumulation, proton motive force dissipation, ATP depletion, and metabolic collapse, collectively leading to bacterial death. OT-CATH also demonstrated favorable stability, low cytotoxicity, and favorable pharmacokinetic properties with measurable pulmonary distribution. In a murine pneumonia model, OT-CATH significantly improved survival, reduced bacterial burdens in the lungs and bronchoalveolar lavage fluid, and alleviated lung injury. These findings identify OT-CATH as a promising membrane-targeting antimicrobial peptide for the treatment of multidrug-resistant gram-negative bacterial infections.

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Journal
Antimicrobial Agents and Chemotherapy
Published
2026-10-01
DOI
https://doi.org/10.1128/aac.01026-26
Primary Topic
Antimicrobial Peptides and Activities
Type
article
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article

OT-CATH, a conserved antimicrobial peptide in Otariidae species, exhibits potent activity against gram-negative bacteria

Chenchen Shi, Zifan Ye, Juan Wang, Yipeng Wang et al.
Antimicrobial Agents and Chemotherapy
Antimicrobial Peptides and Activities
article

OT-CATH, a conserved antimicrobial peptide in Otariidae species, exhibits potent activity against gram-negative bacteria

Chenchen Shi, Zifan Ye, Juan Wang, Yipeng Wang, Yixiao Song, Xudong Jiao, Xiangjin Kong, Jingjing Zhang, Yufeng Ren
article en

Abstract

ABSTRACT The rapid emergence of multidrug-resistant gram-negative bacteria necessitates the development of effective antimicrobial agents to combat antimicrobial resistance. Here, we identified and characterized OT-CATH, a conserved cathelicidin-family antimicrobial peptide derived from Otariidae species. OT-CATH exhibited potent bactericidal activity against gram-negative bacteria, particularly extended-spectrum β-lactamase-producing Escherichia coli , with rapid killing kinetics, potent antibiofilm activity, and no detectable resistance after 40 serial passages. Mechanistically, OT-CATH bound lipopolysaccharide, disrupted both the outer and inner bacterial membranes, and translocated into the cytoplasm to interact with bacterial DNA. Membrane disruption further triggered intracellular reactive oxygen species accumulation, proton motive force dissipation, ATP depletion, and metabolic collapse, collectively leading to bacterial death. OT-CATH also demonstrated favorable stability, low cytotoxicity, and favorable pharmacokinetic properties with measurable pulmonary distribution. In a murine pneumonia model, OT-CATH significantly improved survival, reduced bacterial burdens in the lungs and bronchoalveolar lavage fluid, and alleviated lung injury. These findings identify OT-CATH as a promising membrane-targeting antimicrobial peptide for the treatment of multidrug-resistant gram-negative bacterial infections.

Antimicrobial Agents and Chemotherapy
Soochow University (TW), Chinese Academy of Sciences (CN), Soochow University (CN), Yantai Institute of Coastal Zone Research (CN), Shandong Academy of Chinese Medicine (CN), University of Chinese Academy of Sciences (CN)
Openalex Percentile: Top 14%
Antimicrobial Peptides and Activities
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