The widespread PII signal transduction proteins are known for integrating signals of nitrogen and energy supply and regulating cellular behavior by interacting with a multitude of target proteins. The PII protein of the cyanobacterium Synechococcus elongatus forms complexes with the controlling enzyme of arginine synthesis, N-acetyl-L-glutamate kinase (NAGK) in a 2-oxoglutarate- and ATP/ADP-dependent manner. Fusing NAGK and PII proteins to either CFP or YFP yielded a FRET sensor that specifically responded to 2-oxoglutarate. The impact of the fluorescent tags on PII and NAGK was evaluated by enzyme assays, surface plasmon resonance spectroscopy and isothermal calorimetric experiments. The developed FRET sensor provides real-time data on PII...
P(II) proteins control key processes of nitrogen metabolism in bacteria, archaea, and plants in resp...
P(II) signal transduction proteins are highly conserved in bacteria, archaea and plants and have key...
P(II) signal transduction proteins are highly conserved in bacteria, archaea and plants and have key...
<div><p>The widespread P<sub>II</sub> signal transduction proteins are known for integrating signals...
PII proteins constitute a superfamily of highly conserved signaling devices, common in all domains o...
International audience2-Oxoglutarate is a central metabolite and a signalling molecule in both proka...
PII proteins constitute a superfamily of highly conserved signaling devices, common in all domains o...
PII proteins are central signal processing units for the regulation of nitrogen metabolism in bacter...
PII proteins constitute one of the most widely distributed families of signal transduction proteins,...
PII proteins constitute one of the most widely distributed families of signal transduction proteins,...
PII signal transduction proteins have key functions in coordination of central metabolism by integra...
PII signal transduction proteins have key functions in coordination of central metabolism by integra...
PII signaling proteins comprise one of the most versatile signaling devices in nature and have a hig...
PII, one of the most conserved signal transduction proteins, is believed to be a key player in the c...
18 páginas, 8 figuras, 1 tablaPII, a homotrimeric very ancient and highly widespread (bacteria, arch...
P(II) proteins control key processes of nitrogen metabolism in bacteria, archaea, and plants in resp...
P(II) signal transduction proteins are highly conserved in bacteria, archaea and plants and have key...
P(II) signal transduction proteins are highly conserved in bacteria, archaea and plants and have key...
<div><p>The widespread P<sub>II</sub> signal transduction proteins are known for integrating signals...
PII proteins constitute a superfamily of highly conserved signaling devices, common in all domains o...
International audience2-Oxoglutarate is a central metabolite and a signalling molecule in both proka...
PII proteins constitute a superfamily of highly conserved signaling devices, common in all domains o...
PII proteins are central signal processing units for the regulation of nitrogen metabolism in bacter...
PII proteins constitute one of the most widely distributed families of signal transduction proteins,...
PII proteins constitute one of the most widely distributed families of signal transduction proteins,...
PII signal transduction proteins have key functions in coordination of central metabolism by integra...
PII signal transduction proteins have key functions in coordination of central metabolism by integra...
PII signaling proteins comprise one of the most versatile signaling devices in nature and have a hig...
PII, one of the most conserved signal transduction proteins, is believed to be a key player in the c...
18 páginas, 8 figuras, 1 tablaPII, a homotrimeric very ancient and highly widespread (bacteria, arch...
P(II) proteins control key processes of nitrogen metabolism in bacteria, archaea, and plants in resp...
P(II) signal transduction proteins are highly conserved in bacteria, archaea and plants and have key...
P(II) signal transduction proteins are highly conserved in bacteria, archaea and plants and have key...