Regulation of formicamycin biosynthesis: new potent antibiotics against MRSA
Lead Research Organisation:
University of East Anglia
Department Name: Graduate Office
Abstract
Most antibiotics in clinical use today are based on microbial natural products that were discovered during a golden age of antibiotic discovery that peaked in the mid 1950s. Remarkably, one genus of soil bacteria, called Streptomyces, account for 55% of clinically used antibiotics. The discovery pipeline dried up in the 1960s because scientists began to rediscover the same microbial strains making the same antibiotics and assumed they had found them all. However, genome sequencing from 2000 onwards has revealed these bacteria encode thousands of novel molecules that have not yet been isolated.
New species of Streptomyces are isolated from under-explored, symbiotic niches such as the nests of fungus-growing ants, sequence their genomes and then engineer them using CRISPR to activate biosynthetic gene clusters encoding novel molecules. This project focusses on a new species isolated called Streptomyces formicae which makes novel antibiotics called formicamycins that are potent against multidrug resistant human pathogens such as MRSA and vancomycin resistant enterococci. The project is aimed understanding the regulation of formicamycin biosynthesis with a view to making over-producing strains so the molecules can be further characterised as potential clinical leads. The project will also determine the natural resistance mechanisms in S. formicae and do experiments to see if these natural resistance genes can confer resistance on pathogenic bacteria. This is important for assessing the potential of these new antibiotics to be used as drugs.
New species of Streptomyces are isolated from under-explored, symbiotic niches such as the nests of fungus-growing ants, sequence their genomes and then engineer them using CRISPR to activate biosynthetic gene clusters encoding novel molecules. This project focusses on a new species isolated called Streptomyces formicae which makes novel antibiotics called formicamycins that are potent against multidrug resistant human pathogens such as MRSA and vancomycin resistant enterococci. The project is aimed understanding the regulation of formicamycin biosynthesis with a view to making over-producing strains so the molecules can be further characterised as potential clinical leads. The project will also determine the natural resistance mechanisms in S. formicae and do experiments to see if these natural resistance genes can confer resistance on pathogenic bacteria. This is important for assessing the potential of these new antibiotics to be used as drugs.
Organisations
Studentship Projects
Project Reference | Relationship | Related To | Start | End | Student Name |
---|---|---|---|---|---|
BB/M011216/1 | 01/10/2015 | 31/03/2024 | |||
2239940 | Studentship | BB/M011216/1 | 01/10/2019 | 18/12/2023 | Katherine Noble |