John T. Williams

Affiliations: 
Oregon Health and Science University, Portland, OR 
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"John Williams"
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Publications

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Rodriguez-Contreras D, Condon AF, Buck DC, et al. (2021) Signaling-Biased and Constitutively Active Dopamine D2 Receptor Variant. Acs Chemical Neuroscience
van der Weijden MCM, Rodriguez-Contreras D, Delnooz CCS, et al. (2020) A Gain-of-Function Variant in Dopamine D2 Receptor and Progressive Chorea and Dystonia Phenotype. Movement Disorders : Official Journal of the Movement Disorder Society
Leff ER, Arttamangkul S, Williams JT. (2020) Chronic treatment with morphine disrupts acute kinase-dependent desensitization of GPCRs. Molecular Pharmacology
Birdsong WT, Williams JT. (2020) Recent progress in opioid research from an electrophysiological perspective. Molecular Pharmacology
Arttamangkul S, Plazek A, Platt EJ, et al. (2019) Visualizing endogenous opioid receptors in living neurons using ligand-directed chemistry. Elife. 8
Robinson BG, Cai X, Wang J, et al. (2019) RIM is essential for stimulated but not spontaneous somatodendritic dopamine release in the midbrain. Elife. 8
Williams JT, Arttamangkul S, Leff ER, et al. (2019) Separation of acute desensitization and long-term tolerance of mu-opioid receptors is determined by the degree of C-terminal phosphorylation. Molecular Pharmacology
Kliewer A, Schmiedel F, Sianati S, et al. (2019) Phosphorylation-deficient G-protein-biased μ-opioid receptors improve analgesia and diminish tolerance but worsen opioid side effects. Nature Communications. 10: 367
Arttamangkul S, Plazek A, Platt EJ, et al. (2019) Author response: Visualizing endogenous opioid receptors in living neurons using ligand-directed chemistry Elife
Robinson BG, Cai X, Wang J, et al. (2019) Author response: RIM is essential for stimulated but not spontaneous somatodendritic dopamine release in the midbrain Elife
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