原肌球蛋白受体激酶B
抗抑郁药
生物
变构调节
神经营养因子
突触可塑性
神经营养素
神经科学
脑源性神经营养因子
药理学
受体
细胞生物学
生物化学
海马体
作者
Plínio Casarotto,Mykhailo Girych,Senem Merve Fred,Vera Kovaleva,Rafael Moliner,Giray Enkavi,Caroline Biojone,Cecilia Cannarozzo,Madhusmita Priyadarshini Sahu,Katja Kaurinkoski,Cecilia A. Brunello,Anna Steinzeig,Frederike Winkel,Sudarshan Patil,Stefan Vestring,Tsvetan Serchov,Cassiano R.A.F. Diniz,Liina Laukkanen,Iseline Cardon,Hanna Antila
出处
期刊:Cell
[Cell Press]
日期:2021-02-18
卷期号:184 (5): 1299-1313.e19
被引量:537
标识
DOI:10.1016/j.cell.2021.01.034
摘要
It is unclear how binding of antidepressant drugs to their targets gives rise to the clinical antidepressant effect. We discovered that the transmembrane domain of tyrosine kinase receptor 2 (TRKB), the brain-derived neurotrophic factor (BDNF) receptor that promotes neuronal plasticity and antidepressant responses, has a cholesterol-sensing function that mediates synaptic effects of cholesterol. We then found that both typical and fast-acting antidepressants directly bind to TRKB, thereby facilitating synaptic localization of TRKB and its activation by BDNF. Extensive computational approaches including atomistic molecular dynamics simulations revealed a binding site at the transmembrane region of TRKB dimers. Mutation of the TRKB antidepressant-binding motif impaired cellular, behavioral, and plasticity-promoting responses to antidepressants in vitro and in vivo. We suggest that binding to TRKB and allosteric facilitation of BDNF signaling is the common mechanism for antidepressant action, which may explain why typical antidepressants act slowly and how molecular effects of antidepressants are translated into clinical mood recovery.
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