#t3ss — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #t3ss, aggregated by home.social.
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A dangerous #Ecoli strain has emerged; a small #mutation may explain its rise
A sweeping genetic analysis by researchers at #CDC suggests a tiny mutation in one of the #bacteria's molecular weapons may be behind the strain's rise. The mutation the CDC researchers found was in one of these #T3SS effectors, a protein called #EspW. The CDC researchers suggest this could help E. coli when it's on #lettuce and other #produce.
https://arstechnica.com/health/2025/05/a-dangerous-e-coli-strain-has-emerged-a-small-mutation-may-explain-its-rise/ -
A dangerous #Ecoli strain has emerged; a small #mutation may explain its rise
A sweeping genetic analysis by researchers at #CDC suggests a tiny mutation in one of the #bacteria's molecular weapons may be behind the strain's rise. The mutation the CDC researchers found was in one of these #T3SS effectors, a protein called #EspW. The CDC researchers suggest this could help E. coli when it's on #lettuce and other #produce.
https://arstechnica.com/health/2025/05/a-dangerous-e-coli-strain-has-emerged-a-small-mutation-may-explain-its-rise/ -
A dangerous #Ecoli strain has emerged; a small #mutation may explain its rise
A sweeping genetic analysis by researchers at #CDC suggests a tiny mutation in one of the #bacteria's molecular weapons may be behind the strain's rise. The mutation the CDC researchers found was in one of these #T3SS effectors, a protein called #EspW. The CDC researchers suggest this could help E. coli when it's on #lettuce and other #produce.
https://arstechnica.com/health/2025/05/a-dangerous-e-coli-strain-has-emerged-a-small-mutation-may-explain-its-rise/ -
A dangerous #Ecoli strain has emerged; a small #mutation may explain its rise
A sweeping genetic analysis by researchers at #CDC suggests a tiny mutation in one of the #bacteria's molecular weapons may be behind the strain's rise. The mutation the CDC researchers found was in one of these #T3SS effectors, a protein called #EspW. The CDC researchers suggest this could help E. coli when it's on #lettuce and other #produce.
https://arstechnica.com/health/2025/05/a-dangerous-e-coli-strain-has-emerged-a-small-mutation-may-explain-its-rise/ -
A dangerous #Ecoli strain has emerged; a small #mutation may explain its rise
A sweeping genetic analysis by researchers at #CDC suggests a tiny mutation in one of the #bacteria's molecular weapons may be behind the strain's rise. The mutation the CDC researchers found was in one of these #T3SS effectors, a protein called #EspW. The CDC researchers suggest this could help E. coli when it's on #lettuce and other #produce.
https://arstechnica.com/health/2025/05/a-dangerous-e-coli-strain-has-emerged-a-small-mutation-may-explain-its-rise/ -
Widespread #plant #metabolite shows potential for combating #bacterial #diseases in #crops.
#agriculture #food_security #erucamide #TypeIII_Secretion #T3SS #injectisome
https://phys.org/news/2025-03-widespread-metabolite-potential-combating-bacterial.html
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Widespread #plant #metabolite shows potential for combating #bacterial #diseases in #crops.
#agriculture #food_security #erucamide #TypeIII_Secretion #T3SS #injectisome
https://phys.org/news/2025-03-widespread-metabolite-potential-combating-bacterial.html
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Widespread #plant #metabolite shows potential for combating #bacterial #diseases in #crops.
#agriculture #food_security #erucamide #TypeIII_Secretion #T3SS #injectisome
https://phys.org/news/2025-03-widespread-metabolite-potential-combating-bacterial.html
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Widespread #plant #metabolite shows potential for combating #bacterial #diseases in #crops.
#agriculture #food_security #erucamide #TypeIII_Secretion #T3SS #injectisome
https://phys.org/news/2025-03-widespread-metabolite-potential-combating-bacterial.html
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Widespread #plant #metabolite shows potential for combating #bacterial #diseases in #crops.
#agriculture #food_security #erucamide #TypeIII_Secretion #T3SS #injectisome
https://phys.org/news/2025-03-widespread-metabolite-potential-combating-bacterial.html
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This study uses a #FluidFM-based injection approach to show that establishment of a #Salmonella replicative niche in the cytosol of enteroid cells (when uncoupled from invasion) does not require #flagellin or #T3SS effectors #PLOSBiology @Microbio_ETH https://plos.io/3UBBUhz
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This study uses a #FluidFM-based injection approach to show that establishment of a #Salmonella replicative niche in the cytosol of enteroid cells (when uncoupled from invasion) does not require #flagellin or #T3SS effectors #PLOSBiology @Microbio_ETH https://plos.io/3UBBUhz
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This study uses a #FluidFM-based injection approach to show that establishment of a #Salmonella replicative niche in the cytosol of enteroid cells (when uncoupled from invasion) does not require #flagellin or #T3SS effectors #PLOSBiology @Microbio_ETH https://plos.io/3UBBUhz
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This study uses a #FluidFM-based injection approach to show that establishment of a #Salmonella replicative niche in the cytosol of enteroid cells (when uncoupled from invasion) does not require #flagellin or #T3SS effectors #PLOSBiology @Microbio_ETH https://plos.io/3UBBUhz
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This study uses a #FluidFM-based injection approach to show that establishment of a #Salmonella replicative niche in the cytosol of enteroid cells (when uncoupled from invasion) does not require #flagellin or #T3SS effectors #PLOSBiology @Microbio_ETH https://plos.io/3UBBUhz