Keyphrases
Degradation Products
100%
Proteolytic Degradation
100%
Adipose Tissue
100%
Chemosensor
100%
T1R3
100%
Food Intake
100%
Free Fatty Acids
100%
7TM Receptors
100%
Therapeutic Potential
50%
Drug Target
50%
GPR92
50%
Receptor Knockout
50%
Gastrointestinal Tract
50%
Endocrine Glands
50%
FFA3
50%
Type 2 Diabetes Mellitus (T2DM)
50%
FFA2
50%
Pancreas
50%
Glucagon
50%
Subtype Selectivity
50%
Leptin
50%
GPR120
50%
Fatty Acid Sensing
50%
G Protein-coupled Receptor
50%
Selective Ligands
50%
Carbohydrates
50%
Nutrient Sensing
50%
GPR84
50%
Physiological Studies
50%
Carbohydrate Sensing
50%
Kidney
50%
Natural Ligands
50%
Sensing Receptors
50%
Physiological Function
50%
Promising Drug
50%
T1R1
50%
Transmembrane
50%
Incretin Hormones
50%
Knock-in Mouse Model
50%
Insulin
50%
FFA1
50%
D-amino Acids
50%
Molecular Mechanism
50%
Amino Acids
50%
Calcium-sensing Receptor (CaSR)
50%
Biochemistry, Genetics and Molecular Biology
7TM Receptors
100%
Free Fatty Acids
100%
Amino Acid
100%
Knockout Mouse
50%
Glucagon
50%
Incretin
50%
Leptin
50%
Calcium-Sensing Receptor
50%
G Protein Coupled Receptor
50%
Gastrointestinal Tract
50%
Medicine and Dentistry
Receptor
100%
Food Intake
100%
Amino Acid
22%
Fatty Acid
22%
Adipose Tissue
22%
Gut
11%
Leptin
11%
Maturity Onset Diabetes of the Young
11%
Glucagon
11%
Nutrient Sensing
11%
Calcium Sensing Receptor
11%
Endocrine Gland
11%
Receptor Family
11%
Incretin
11%
G Protein Coupled Receptor
11%
Gastrointestinal Tract
11%
Neuroscience
7TM Receptors
100%
Receptor
100%
Free Fatty Acids
28%
Amino Acid
28%
Adipose Tissue
28%
Incretin
14%
Endocrine Gland
14%
Glucagon
14%
Leptin
14%
Calcium-Sensing Receptor
14%
G Protein Coupled Receptor
14%
Sensation of Taste
14%