Scientists discover new mechanisms that bacteria use to protect themselves from antibiotics
University of Birmingham Medical News Nov 23, 2017
Researchers at the University of Birmingham have identified new mechanisms used by bacteria to resist infection-fighting antibiotics.
The team of experts at the UniversityÂs Institute of Microbiology and Infection focussed their research on E. coli, which can cause urinary and blood stream infections.
Using novel experimental approaches, involving whole genome DNA sequencing never previously applied in this area of research, the team identified mechanisms or Âstrategies that bacteria use to protect themselves from antibiotics.
Senior author professor David Grainger said: ÂWe investigated a gene found in bacteria that is involved in resistance to multiple antibiotics.
ÂAlthough we have known about this gene for many decades, the Ânuts and bolts of how it provides resistance to antibiotics has been difficult to pick apart.
ÂOur research identified previously unknown roles for this gene in controlling processes that provide drug resistance.
ÂWe found two completely unexpected mechanisms that bacteria use to protect themselves from antibiotics. One protected their DNA from the harmful effects of fluoroquinolone antibiotics, and the other prevented doxycyline getting inside bacteria.Â
Dr Prateek Sharma, who did much of the experimental work, adds: ÂThe resistance mechanisms that we identified are found in many different species of bacteria therefore, our research could lead to the discovery of molecules that could be developed into new drugs that can treat bacterial infections.Â
The study, published in the journal Nature Communications, was the result of a decade-long research project carried out by the University.
Co-author professor Laura Piddock concluded: ÂAntibiotics underpin modern medical, veterinary and farming practices world-wide. However, the efficacy of antibiotics is decreasing as more bacteria become resistant.
ÂResearch such as ours that provides greater understanding of drug resistance mechanisms is vital if we are to address the global crisis of antibiotic resistance.Â
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The team of experts at the UniversityÂs Institute of Microbiology and Infection focussed their research on E. coli, which can cause urinary and blood stream infections.
Using novel experimental approaches, involving whole genome DNA sequencing never previously applied in this area of research, the team identified mechanisms or Âstrategies that bacteria use to protect themselves from antibiotics.
Senior author professor David Grainger said: ÂWe investigated a gene found in bacteria that is involved in resistance to multiple antibiotics.
ÂAlthough we have known about this gene for many decades, the Ânuts and bolts of how it provides resistance to antibiotics has been difficult to pick apart.
ÂOur research identified previously unknown roles for this gene in controlling processes that provide drug resistance.
ÂWe found two completely unexpected mechanisms that bacteria use to protect themselves from antibiotics. One protected their DNA from the harmful effects of fluoroquinolone antibiotics, and the other prevented doxycyline getting inside bacteria.Â
Dr Prateek Sharma, who did much of the experimental work, adds: ÂThe resistance mechanisms that we identified are found in many different species of bacteria therefore, our research could lead to the discovery of molecules that could be developed into new drugs that can treat bacterial infections.Â
The study, published in the journal Nature Communications, was the result of a decade-long research project carried out by the University.
Co-author professor Laura Piddock concluded: ÂAntibiotics underpin modern medical, veterinary and farming practices world-wide. However, the efficacy of antibiotics is decreasing as more bacteria become resistant.
ÂResearch such as ours that provides greater understanding of drug resistance mechanisms is vital if we are to address the global crisis of antibiotic resistance.Â
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