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活细胞衍射 X 射线跟踪分析证实内部盐桥对于配体诱导的血清素受体扭曲运动至关重要。

Living-Cell Diffracted X-ray Tracking Analysis Confirmed Internal Salt Bridge Is Critical for Ligand-Induced Twisting Motion of Serotonin Receptors.

机构信息

AIST-UTokyo Advanced Operando-Measurement Technology Open Innovation Laboratory (OPERANDO-OIL), National Institute of Advanced Industrial Science and Technology (AIST), 6-2-3 Kashiwanoha, Chiba 277-0882, Japan.

Graduate School of Frontier Sciences, The University of Tokyo, 5-1-5 Kashiwanoha, Chiba 277-8561, Japan.

出版信息

Int J Mol Sci. 2021 May 17;22(10):5285. doi: 10.3390/ijms22105285.

Abstract

Serotonin receptors play important roles in neuronal excitation, emotion, platelet aggregation, and vasoconstriction. The serotonin receptor subtype 2A (5-HTR) is a Gq-coupled GPCR, which activate phospholipase C. Although the structures and functions of 5-HTRs have been well studied, little has been known about their real-time dynamics. In this study, we analyzed the intramolecular motion of the 5-HTR in living cells using the diffracted X-ray tracking (DXT) technique. The DXT is a very precise single-molecular analytical technique, which tracks diffraction spots from the gold nanocrystals labeled on the protein surface. Trajectory analysis provides insight into protein dynamics. The 5-HTRs were transiently expressed in HEK 293 cells, and the gold nanocrystals were attached to the N-terminal introduced FLAG-tag via anti-FLAG antibodies. The motions were recorded with a frame rate of 100 μs per frame. A lifetime filtering technique demonstrated that the unliganded receptors contain high mobility population with clockwise twisting. This rotation was, however, abolished by either a full agonist α-methylserotonin or an inverse agonist ketanserin. Mutation analysis revealed that the "ionic lock" between the DRY motif in the third transmembrane segment and a negatively charged residue of the sixth transmembrane segment is essential for the torsional motion at the N-terminus of the receptor.

摘要

血清素受体在神经元兴奋、情绪、血小板聚集和血管收缩中发挥重要作用。血清素受体亚型 2A(5-HTR)是一种与 Gq 偶联的 GPCR,可激活磷脂酶 C。尽管 5-HTR 的结构和功能已经得到了很好的研究,但对其实时动力学知之甚少。在这项研究中,我们使用衍射 X 射线跟踪(DXT)技术分析了活细胞中 5-HTR 的分子内运动。DXT 是一种非常精确的单分子分析技术,可跟踪标记在蛋白质表面的金纳米晶体的衍射斑点。轨迹分析深入了解蛋白质动力学。5-HTR 在 HEK 293 细胞中瞬时表达,并通过抗 FLAG 抗体将金纳米晶体附着在引入的 N 端 FLAG 标签上。以 100 μs/帧的帧率记录运动。寿命过滤技术表明,未配体的受体含有高迁移率群体,呈顺时针扭曲。然而,这种旋转被完全激动剂α-甲基血清素或反向激动剂酮色林完全消除。突变分析表明,第三跨膜段中的 DRY 基序与第六跨膜段中的带负电荷残基之间的“离子锁”对于受体 N 端的扭转运动至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70b3/8157010/274b5d631c95/ijms-22-05285-g001.jpg

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