The prototypical hallucinogen LSD acts via serotonin receptors, and here we describe the crystal structure of LSD in complex with the human serotonin receptor 5-HT(2B). The complex reveals conformational rearrangements to accommodate LSD, providing a structural explanation for the conformational selectivity of LSD's key diethylamide moiety. LSD dissociates exceptionally slow from both 5-HT(2B)R and 5-HT(2A)R-a major target for its psychoactivity. Molecular dynamics (MD) simulations suggest that LSD's slow binding kinetics may be due to a "lid" formed by extracellular loop 2 (EL2) at the entrance to the binding pocket. A mutation predicted to increase the mobility of this lid greatly accelerates LSD's binding kinetics and selectively dampens LSD-mediated β-arrestin2 recruitment. This study thus reveals an unexpected binding mode of LSD; illuminates key features of its kinetics, stereochemistry, and signaling; and provides a molecular explanation for LSD's actions at human serotonin receptors. PAPERCLIP.
Crystal Structure of an LSD-Bound Human Serotonin Receptor.
LSD结合的人类血清素受体的晶体结构
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作者:Wacker Daniel, Wang Sheng, McCorvy John D, Betz Robin M, Venkatakrishnan A J, Levit Anat, Lansu Katherine, Schools Zachary L, Che Tao, Nichols David E, Shoichet Brian K, Dror Ron O, Roth Bryan L
| 期刊: | Cell | 影响因子: | 42.500 |
| 时间: | 2017 | 起止号: | 2017 Jan 26; 168(3):377-389 |
| doi: | 10.1016/j.cell.2016.12.033 | 种属: | Human |
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