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Covalent Modification and Regulation of the Nuclear Receptor Nurr1 by a Dopamine Metabolite

Cell Chem Biol. . 2019-02; 
Bruning JM, Wang Y, Oltrabella F, Tian B, Kholodar SA, Liu H, Bhattacharya P, Guo S, Holton JM, Fletterick RJ, Jacobson MP, England PM.
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Mutagenesis Services ... gene insert prepared by Integrated DNA technologies) or by custom gene synthesis (Cys465Ala, Cys475Thr, Cys505Thr, Cys534Thr; prepared by GenScript) starting from the wildtype 6xHis Tag – Avi Tag – Nurr1 LBD (363-598) construct... Get A Quote

摘要

Nurr1, a nuclear receptor essential for the development, maintenance, and survival of midbrain dopaminergic neurons, is a potential therapeutic target for Parkinson's disease, a neurological disorder characterized by the degeneration of these same neurons. Efforts to identify Nurr1 agonists have been hampered by the recognition that it lacks several classic regulatory elements of nuclear receptor function, including the canonical ligand-binding pocket. Here we report that the dopamine metabolite 5,6-dihydroxyindole (DHI) binds directly to and modulates the activity of Nurr1. Using biophysical assays and X-ray crystallography, we show that DHI binds to the ligand-binding domain within a non-canonical pocket, for... More

关键词

5,6-dihydroxyindole; 5,6-dihydroxyindolequinone; 5,6-indolequinone; DHI; DHICA; IQ; Nr4A2; Nurr1; Parkinson's disease; cysteine adduct; dopamine homeostasis; dopamine metabolite; dopamine oxidation; ligand-binding domain; ligand-binding pocket; nuclear receptor; nuclear receptor related 1 protein; redox sensor