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Novel Drug Target for Deadly E.coli Infections

by Samhita Vitta on September 26, 2020 at 12:58 PM

Novel molecular pathway that controls Shiga toxins in E.coli infections in the intestine was discovered in a new study.

Escherichia coli or E.coli is a bacteria which mostly causes mild food poisoning, but some types of E.coli can be fatal.


Enterohemorrhagic E. coli (EHEC) is a foodborne pathogen that causes a severe intestinal infection in humans. They release Shiga toxins during the infection, which results in neurological and kidney damage.

‘Researchers have discovered a very short piece of Shiga toxin messenger RNA which is made into a regulatory non-coding RNA which silences the toxin and promotes the growth of Enterohemorrhagic E. coli (EHEC). This pathway has the potential to be a drug target in the treatment of EHEC infections.’

Currently, there is no treatment for EHEC infections. Antibiotics are generally not recommended as they stimulate the production of Shiga toxin.

The researchers identified a new target which can be used for drug development that can suppress Shiga toxin during EHEC infection.

Contracting Enterohemorrhagic E. coli (EHEC) Infection

There are several ways in which people can be infected with EHEC.

People can be infected with EHEC if:

Children below the age of five and older people are at the greatest risk of developing an EHEC infection.

EHEC Outbreaks can be Deadly

The prevalence of EHEC is low compared to other foodborne pathogens. However, the disease could be very severe or even fatal. The most significant outbreak of EHEC was in South Australia in 1995. It was caused due to contaminated mettwurst. Mettwrust is a semi-dry fermented sausage which is made from the raw minced port which is preserved by curing and smoking.

This episode of EHEC triggered a major food safety investigation and outbreaks since 1995 have been smaller.

Shiga toxin-producing E. coli is still a major food safety concern after a large outbreak occurred in Germany in 2011. The strain was spread mostly through contaminated sprouts or close contact with an infected person.

New pathway 'hiding in plain sight'

The discovery of the new pathway by the researchers is the first discovery in 20 years.

An earlier study in 2001 found that the production of Shiga toxin was controlled by a bacterial virus, known as a bacteriophage, within the genome.

In the current study, the researchers found a very short piece of Shiga toxin messenger RNA which is made into a regulatory non-coding RNA which silences the toxin and promotes the growth of the pathogen.

The recent advances in RNA sequencing technology were used to detect the presence of the new regulatory non-coding RNA embedded within the Shiga toxin messenger RNA.

For almost 20 years this new regulatory non-coding RNA had been hiding in plain sight because around 7000 studies have focused on Shiga toxin.

Implications for Treating EHEC Infections

The finding of the novel pathway opens up new possibilities for the treatment of EHEC infections

"Our work shows a new mechanism for controlling toxin production that may be amenable to new RNA-based therapeutics to inhibit toxin production during infection. We anticipate this would expand intervention options and potentially allow the use of antibiotics that are currently not recommended because they stimulate Shiga toxin production," Dr. Tree said.

The researchers are looking forward to testing these new interventions in the next stage of their research.



Source: Medindia

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