ENSG00000280094 (OR1B1)

homo sapiens

olfactory receptor family 1 subfamily B member 1

Filter your results

Homo sapiens
Organism part
Showing 1 experiment:
Created with Highcharts 6.2.0basal ganglionbrain fragmentcerebellumcerebral cortexchoroid plexusdiencephalonforebrainforebrain and midbrainhindbrainmedulla oblongatamidbrainspinal cordtelencephalontemporal lobe
P
Proteomics
T
Transcriptomics
High
Medium
Low
Below cutoff
No data available

Filter your results

Kingdom
Species
Experiment type
Experimental variables
Regulation
Log2-fold changeSpeciesGene nameComparisonExperimental variablesExperiment name
Adjusted p-valueLog2-fold change
2.1993 × 10-23.8
OR1B1'triple-negative breast cancer; breast carcinoma' vs 'normal'clinical information, diseaseRNA-seq of 17 breast tumor samples of three different subtypes and normal human breast organoids samples
Adjusted p-valueLog2-fold change
2.5843 × 10-23.3
OR1B1'non-triple-negative breast cancer; breast carcinoma' vs 'normal'clinical information, diseaseRNA-seq of 17 breast tumor samples of three different subtypes and normal human breast organoids samples
Adjusted p-valueLog2-fold change
6.5297 × 10-61.7
OR1B1'differentiated; hAKPC-P' vs 'undifferentiated; hIPod'cell type, phenotypeDifferentiation of human amniotic fluid kidney progenitor cells into podocytes and comparison with human conditionally immortalized podocytes
Adjusted p-valueLog2-fold change
1.3947 × 10-51.5
OR1B1'differentiated; hAKPC-P' vs 'undifferentiated; hAKPC-P'cell type, phenotypeDifferentiation of human amniotic fluid kidney progenitor cells into podocytes and comparison with human conditionally immortalized podocytes
Adjusted p-valueLog2-fold change
2.3718 × 10-51.5
OR1B1'differentiated; hAKPC-P' vs 're-differentiated; hIPod'cell type, phenotypeDifferentiation of human amniotic fluid kidney progenitor cells into podocytes and comparison with human conditionally immortalized podocytes
Adjusted p-valueLog2-fold change
2.1888 × 10-31.2
OR1B1'diabetes mellitus' vs 'normal'diseaseAn integrative analysis of skeletal muscle insulin resistance