The development of biosensors for in vitro quantification of small molecules such as metabolites or man-made chemicals is still a major challenge. Here we show that engineered variants of the sensory PAS domain of the histidine kinase CitA of the thermophilic bacterium Geobacillus thermoleovorans represent promising alternatives to established biorecognition elements. By combining binding site grafting and rational design we constructed protein variants binding l-malate, ethylmalonate, or the aromatic compound phthalate instead of the native ligand citrate. Due to more favorable entropy contributions, the wild-type protein and its engineered variants exhibited increased (nano- to micromolar) affinities and improved enantioselectivity compar...
WOS: 000325959600003PubMed ID: 24152100Circularly permuted green fluorescent protein (cGFP) was inse...
Phenolic aromatic compounds are a major source of environmental pollution. Currently there are no in...
ConspectusHistidine kinases (HK) are the sensory proteins of two-component systems, responsible for ...
The development of biosensors for in vitro quantification of small molecules such as metabolites or ...
<p>Biosensors incorporating proteins as molecular recognition elements for analytes are used in clin...
Histidine kinases (HK) are the sensory proteins of two-component systems, responsible for a large fr...
Most bacteria use transmembrane sensors to detect a wide range of environmental stimuli. A large cla...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
The periplasmic binding protein (PBP) superfamily is found throughout the genosphere of both prokary...
Phenolic aromatic compounds are a major source of environmental pollution. Currently there are no in...
Considerable insight has been gained on Periplasmic Binding proteins from E.coli as novel candidates...
Two component systems, composed of a receptor histidine kinase and a cytoplasmic response regulator,...
Metabolic engineering for microbial overproduction of biochemicals benefits from continued advances ...
Detection of chemical signals is critical for cells in nature as well as in synthetic biology, where...
Bacteria possess a large number of signal transduction systems that sense and respond to different e...
WOS: 000325959600003PubMed ID: 24152100Circularly permuted green fluorescent protein (cGFP) was inse...
Phenolic aromatic compounds are a major source of environmental pollution. Currently there are no in...
ConspectusHistidine kinases (HK) are the sensory proteins of two-component systems, responsible for ...
The development of biosensors for in vitro quantification of small molecules such as metabolites or ...
<p>Biosensors incorporating proteins as molecular recognition elements for analytes are used in clin...
Histidine kinases (HK) are the sensory proteins of two-component systems, responsible for a large fr...
Most bacteria use transmembrane sensors to detect a wide range of environmental stimuli. A large cla...
Histidine kinases are sophisticated molecular sensors that are used by bacteria to detect and respon...
The periplasmic binding protein (PBP) superfamily is found throughout the genosphere of both prokary...
Phenolic aromatic compounds are a major source of environmental pollution. Currently there are no in...
Considerable insight has been gained on Periplasmic Binding proteins from E.coli as novel candidates...
Two component systems, composed of a receptor histidine kinase and a cytoplasmic response regulator,...
Metabolic engineering for microbial overproduction of biochemicals benefits from continued advances ...
Detection of chemical signals is critical for cells in nature as well as in synthetic biology, where...
Bacteria possess a large number of signal transduction systems that sense and respond to different e...
WOS: 000325959600003PubMed ID: 24152100Circularly permuted green fluorescent protein (cGFP) was inse...
Phenolic aromatic compounds are a major source of environmental pollution. Currently there are no in...
ConspectusHistidine kinases (HK) are the sensory proteins of two-component systems, responsible for ...