Molecules found in mucus could prevent cholera infection
MIT researchers have identified molecules found in mucus that can block cholera infection by interfering with the genes that cause the microbe to switch into a harmful state.
MIT researchers have identified molecules found in mucus that can block cholera infection by interfering with the genes that cause the microbe to switch into a harmful state.
Molecular & Computational biology
Dec 12, 2022
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128
In Gram-negative bacteria, which include some of the most devastating human pathogens, just two mechanisms for the export of polysaccharides have been identified so far. Now a Max Planck research team led by Lotte Søgaard-Andersen ...
Cell & Microbiology
Aug 29, 2022
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106
The transport of substances across the membrane into the cell is linked to specific membrane transport proteins. Researchers at the University Hospital Bonn (UKB) and the University of Bonn, in collaboration with an international ...
Molecular & Computational biology
Aug 4, 2022
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95
Using artificial intelligence, UT Southwestern researchers have discovered a new family of sensing genes in enteric bacteria that are linked by structure and probably function, but not genetic sequence. The findings, published ...
Molecular & Computational biology
Jul 2, 2022
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281
The bacterium Vibrio cholerae is the causative agent of the diarrheal disease cholera and is responsible for seven known pandemics. The seventh cholera pandemic began in 1961 and is still active. Unlike previous pandemics, ...
Evolution
Jan 7, 2022
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132
Scientists have discovered an essential protein in cholera-causing bacteria that allows them to adapt to changes in temperature, according to a study published today in eLife.
Cell & Microbiology
Feb 16, 2021
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30
Researchers at The City College of New York have uncovered a novel way in which Vibrio cholerae, the aquatic microbe that causes cholera, may increase its competitive fitness, and the likelihood of creating pandemic strains ...
Cell & Microbiology
Dec 18, 2020
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157
The vast majority of bacteria in the world live on surfaces by forming structures called biofilms. These communities host thousands to millions of bacteria of different types, and are so biologically complex and active that ...
Cell & Microbiology
Oct 8, 2020
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14
In genetics, DNA has always been the star of the show, but scientists are now uncovering the crucial roles of a lesser-known player: transfer RNA.
Biochemistry
Jul 2, 2020
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213
Cholera can kill within hours if left untreated, and it sickens as many as 4 million people a year. In a new article in the journal Cell, researchers describe how gut bacteria helps people resist the disease.
Cell & Microbiology
Jun 29, 2020
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91