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Sulfated steroids as natural ligands of mouse pheromone-sensing neurons
Francesco Nodari
,
Fong Fu Hsu
, Xiaoyan Fu
, Terrence F. Holekamp
, Lung Fa Kao
, John Turk
,
Timothy E. Holy
Division of Endocrinology, Metabolism & Lipid Research
Institute of Clinical and Translational Sciences (ICTS)
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
Department of Neuroscience
DBBS - Computational and Systems Biology
DBBS - Neurosciences
Hope Center for Neurological Disorders
Research output
:
Contribution to journal
›
Article
›
peer-review
168
Scopus citations
Overview
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Keyphrases
Natural Ligands
100%
Sulfated Steroids
100%
Pheromone Detection
100%
Mouse Pheromones
100%
Vomeronasal Sensory Neurons
83%
Urine Concentration
33%
Mouse Urine
33%
Female Mice
33%
Multi-electrode Array Recordings
33%
Active Compounds
33%
Rate of Increase
16%
Chemical Structure
16%
Firing Rate
16%
Knock
16%
Low Molecular Weight
16%
Pheromone
16%
Small Variation
16%
Corticosterone
16%
Sulfur Compounds
16%
Hydrophobicity
16%
Sulfatase
16%
Sensory Transduction
16%
Transduction Channel
16%
Social Status
16%
Social Identity
16%
Electric Charge
16%
Physiological Status
16%
Stimulus Set
16%
Low Volatility
16%
Social Odors
16%
Chemical Communication
16%
Urine Extracts
16%
Chromatographic Fraction
16%
Odour Cues
16%
TRPC2
16%
Biochemistry, Genetics and Molecular Biology
Sensory Neuron
100%
Pheromone
100%
Kidney Concentrating Capacity
40%
Multielectrode Array
40%
Glucocorticoid
40%
Chemical Structure
20%
Copurification
20%
Molecular Weight
20%
Firing Rate
20%
Sulfate
20%
Hydrophobicity
20%
Sulfatase
20%
TRPC2
20%
Corticosterone
20%
Neuroscience
Sensory Neuron
100%
Pheromone
100%
Multielectrode Array
40%
Glucocorticoid
40%
Firing Rate
20%
Corticosterone
20%
Sulfatase
20%
Transient Receptor Potential Channel 2
20%
Pharmacology, Toxicology and Pharmaceutical Science
Pheromone
100%
Glucocorticoid
66%
Hydrophobicity
33%
Sulfatase
33%
Corticosterone
33%
Transient Receptor Potential Channel 2
33%
Sulfate
33%