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The energy sensor AMPK promotes tumor cell survival under stress, but how to prevent AMPK activation to blunt tumor progression remains unclear. Here we show that the metabolite α-ketoglutarate (α-KG) controls AMPK translation through a TET-YBX1 axis, which can be exploited to sensitize human can...

2025-07-17 | MTBLS12741 | MetaboLights

The energy sensor AMPK promotes tumor cell survival under stress, but how to prevent AMPK activation to blunt tumor progression remains unclear. Here we show that the metabolite α-ketoglutarate (α-KG) controls AMPK translation through a TET-YBX1 axis, which can be exploited to sensitize human can...

2025-07-16 | MTBLS12731 | MetaboLights

The energy sensor AMPK promotes tumor cell survival under stress, but how to prevent AMPK activation to blunt tumor progression remains unclear. Here we show that the metabolite α-ketoglutarate (α-KG) controls AMPK translation through a TET-YBX1 axis, which can be exploited to sensitize human can...

2025-07-17 | MTBLS12738 | MetaboLights
Yersinia pestis, the etiological agent of plague, is able to sense cell density by quorum sensing. The function of quorum sensing in Y. pestis is not clear. Here, the process of quorum sensing was investigated by comparing transcript profiles when three quorum-sensing signals are added in. The strai...
ORGANISM(S): Yersinia pestis 
Yersinia pestis, the etiological agent of plague, is able to sense cell density by quorum sensing. The function of quorum sensing in Y. pestis is not clear. Here, the process of autoinducer-2 (AI-2) quorum sensing was investigated by comparing transcript profiles when AI-2 quorum-sensing signal is a...
ORGANISM(S): Yersinia pestis 
Yersinia pestis, the etiological agent of plague, is able to sense cell density by quorum sensing. The function of quorum sensing in Y. pestis is not clear. Here, the process of quorum sensing was investigated by comparing transcript profiles when three quorum-sensing synthase genes are knocked out....
ORGANISM(S): Yersinia pestis 
Burkholderia glumae causes rice grain rot and sheath rot by producing toxoflavin, whose expression is regulated by quorum sensing (QS). The QS systems of the bacterium rely on N-octanoyl homoserine lactone, synthesized by TofI and its cognate receptor TofR, to activate toxoflavin biosynthesis genes ...
ORGANISM(S): Burkholderia glumae 
The quorum regulatory cascade is poorly characterized in Vibrio parahaemolyticus, in part because swarming and pathogenicity - the hallmark traits of the organism - are repressed by this scheme of gene control. As a consequence, many isolates appear silenced for quorum sensing via phase variation. I...
ORGANISM(S): Vibrio parahaemolyticus 
Quorum sensing in Burkholderia cenocepacia H111 involves two signalling systems that depend on different signal molecules, namely N-acyl homoserine lactones (AHLs) and the diffusible signal factor cis-2-dodecenoic acid (BDSF). Previous studies have shown that AHLs and BDSF control similar phenotypic...
ORGANISM(S): Burkholderia cenocepacia H111 
Quorum sensing is a term used to describe cell-to-cell communication that allows cell density-dependent gene expression. Many Gram-negative bacteria use acyl-homoserine lactone (acyl-HSL) synthases to generate fatty acyl-HSL quorum sensing signals, which function with signal receptors to control exp...
ORGANISM(S): Rhodopseudomonas palustris CGA009 
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