The Potential of Non-Ribosomal Peptide Engineering for Creating New Antimicrobial Complexes
Потенциал инженерии нерибосомных пептидов для создания новых антимикробных комплексов
2026-02-16
SCID: 54.1/e6pvk5h9
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antibiotic-resistant microorganismsantimicrobial complexesnon-ribosomal peptidespeptide engineeringself-assembly
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Abstract (AI)
Self-assembling antimicrobial complexes are a promising new technology for the development of antimicrobial, antifungal, and other bioactive agents with targeted delivery, adaptability, and the regulation of processes over time. Ribosomally synthesized antimicrobial peptides (AMPs) are most frequently considered as the basis for such complexes; however, we suggest that non-ribosomally synthesized peptides (NRPs) should be considered as molecules that also hold potential for engineering and already possess a set of qualities that AMPs are still to be engineered to have. This review examines the key features of NRP structure and self-assembly that determine their potential as antimicrobial agents, as well as NRP engineering methods through which new, more advanced agents for combating antibiotic-resistant microorganisms can be created.
Key Findings
1
NRP engineering methods could enable creation of advanced bioactive agents against antibiotic-resistant microorganisms.
2
NRP structure and self-assembly characteristics can support the development of antimicrobial and antifungal agents with targeted delivery and temporally regulated activity.
3
NRPs already possess structural and functional properties that ribosomally synthesized antimicrobial peptides may require additional engineering to acquire.
4
Non-ribosomally synthesized peptides (NRPs) are proposed as promising building blocks for engineering self-assembling antimicrobial complexes.
Research Object
non-ribosomally synthesized peptides (NRPs) and their self-assembling antimicrobial complexes
Research Subject
the structural features, self-assembly properties, and engineering potential of NRPs for creating advanced antimicrobial agents against antibiotic-resistant microorganisms
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2026-02-16
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