about
Light resonance energy transfer-based methods in the study of G protein-coupled receptor oligomerization.Systematic protein-protein interaction mapping for clinically relevant human GPCRsFluorescence resonance energy transfer-based technologies in the study of protein-protein interactions at the cell surface.μ opioid receptor, social behaviour and autism spectrum disorder: reward matters.β-arrestin signalling and bias in hormone-responsive GPCRs.The Parkinson's disease-associated GPR37 receptor-mediated cytotoxicity is controlled by its intracellular cysteine-rich domain.The Parkinson's disease-associated GPR37 receptor interacts with striatal adenosine A2A receptor controlling its cell surface expression and function in vivo.Histamine H3 receptor activation potentiates peripheral opioid-mediated antinociception: substance P role in peripheral inflammation in mice.The role of parkinson's disease-associated receptor GPR37 in the hippocampus: functional interplay with the adenosinergic system.Adenosine A2A receptor-mediated control of pilocarpine-induced tremulous jaw movements is Parkinson's disease-associated GPR37 receptor-dependent.Detection of heteromers formed by cannabinoid CB1, dopamine D2, and adenosine A2A G-protein-coupled receptors by combining bimolecular fluorescence complementation and bioluminescence energy transfer.The 4q25 variant rs13143308T links risk of atrial fibrillation to defective calcium homoeostasisThe orphan receptor GPR88 blunts the signaling of opioid receptors and multiple striatal GPCRs
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description
hulumtues
@sq
researcher
@en
wetenschapper
@nl
հետազոտող
@hy
name
Jorge Gandía
@ast
Jorge Gandía
@en
Jorge Gandía
@es
Jorge Gandía
@nl
Jorge Gandía
@sl
type
label
Jorge Gandía
@ast
Jorge Gandía
@en
Jorge Gandía
@es
Jorge Gandía
@nl
Jorge Gandía
@sl
prefLabel
Jorge Gandía
@ast
Jorge Gandía
@en
Jorge Gandía
@es
Jorge Gandía
@nl
Jorge Gandía
@sl
P1053
P-3373-2016
P106
P21
P31
P3829
P496
0000-0003-1711-8075