Curated Information
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Home > Curated Information Page > PubMed Id: 35652052
Chen C, et al. (2022) Agonist-Promoted Phosphorylation and Internalization of the Kappa Opioid Receptor in Mouse Brains: Lack of Connection With Conditioned Place Aversion. Front Pharmacol 13, 835809 35652052
This page summarizes selected information from the record referenced above and curated into PhosphoSitePlus®, a comprehensive online resource for the study of protein post-translational modifications (NAR, 2015, 43:D512-20). To learn more about the scope of PhosphoSitePlus®, click here.
Information from this record has been curated, but not yet edited in PhosphoSitePlus® and may be incomplete.
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T363-p - KOR-1 (mouse)
Modsite: stNRVRNtVQDPAsM SwissProt Entrez-Gene
Orthologous residues
KOR‑1 (human): T363‑p, KOR‑1 (mouse): T363‑p, KOR‑1 (rat): T363‑p
Characterization
Methods used to characterize site in vivo phospho-antibody, western blotting
Relevant cell lines - cell types - tissues:  brain
Cellular systems studied:  tissue
Species studied:  mouse
Upstream Regulation
Treatments, proteins and their effect on site modification: 
Treatments Referenced Treatments Manipulated Protein Referenced Protein Effect Notes
U50488 increase
MOM-SalB increase
42B increase
nalfurafine no change compared to control
Downstream Regulation
Effect of modification (function):  receptor internalization, induced

S369-p - KOR-1 (mouse)
Modsite: NtVQDPAsMRDVGGM SwissProt Entrez-Gene
Orthologous residues
KOR‑1 (human): Y369‑p, KOR‑1 (mouse): S369‑p, KOR‑1 (rat): S369‑p
Characterization
Methods used to characterize site in vivo phospho-antibody, western blotting
Relevant cell lines - cell types - tissues:  brain
Cellular systems studied:  tissue
Species studied:  mouse
Upstream Regulation
Treatments, proteins and their effect on site modification: 
Treatments Referenced Treatments Manipulated Protein Referenced Protein Effect Notes
U50488 increase
MOM-SalB increase
42B increase
nalfurafine no change compared to control
Downstream Regulation
Effect of modification (function):  receptor internalization, induced