Engineering of Phage-Derived Lytic Enzymes: Improving Their Potential as Antimicrobials

Конструирование литических ферментов фагового происхождения: повышение их потенциала в качестве противомикробных средств
Carlos São‐José
2018-03-22

antibacterial agentsenzybioticspeptidoglycan degradationphage-derived lytic enzymesprotein engineering
Lytic enzymes encoded by bacteriophages have been intensively explored as alternative agents for combating bacterial pathogens in different contexts. The antibacterial character of these enzymes (enzybiotics) results from their degrading activity towards peptidoglycan, an essential component of the bacterial cell wall. In fact, phage lytic products have the capacity to kill target bacteria when added exogenously in the form of recombinant proteins. However, there is also growing recognition that the natural bactericidal activity of these agents can, and sometimes needs to be, substantially improved through manipulation of their functional domains or by equipping them with new functions. In addition, often, native lytic proteins exhibit features that restrict their applicability as effective antibacterials, such as poor solubility or reduced stability. Here, I present an overview of the engineering approaches that can be followed not only to overcome these and other restrictions, but also to generate completely new antibacterial agents with significantly enhanced characteristics. As conventional antibiotics are running short, the remarkable progress in this field opens up the possibility of tailoring efficient enzybiotics to tackle the most menacing bacterial infections.
1
Adding new functions to lytic proteins can generate novel antibacterial agents beyond their native activities.
2
Advances in engineering enzybiotics support tailoring more effective alternatives to conventional antibiotics against serious bacterial infections.
3
Engineering their functional domains can substantially enhance the natural bactericidal activity of phage lytic enzymes.
4
Phage-derived lytic enzymes kill target bacteria exogenously by degrading peptidoglycan, an essential bacterial cell-wall component.
5
Protein engineering can address poor solubility, reduced stability, and other limitations restricting native enzyme applicability.

phage-derived lytic enzymes (enzybiotics) used against bacterial pathogens

engineering strategies to enhance antibacterial activity, stability, solubility, functionality, and applicability of phage-derived lytic enzymes

Publication Details
Publication Date
2018-03-22
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Carlos São‐José
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%