Hu Juan, Gao Yue, Huang Qian, Wang Yuanyuan, Mo Xiaoyi, Wang Peiyu, Zhang Youjing, Xie Chang, Li Dongdong, Yao Jing
State Key Laboratory of Virology, Hubei Key Laboratory of Cell Homeostasis, College of Life Sciences, Frontier Science Center for Immunology and Metabolism, Wuhan University, Wuhan, China.
Institute of Biology Paris Seine, Neuroscience Paris Seine, CNRS UMR8246, INSERM U1130, Sorbonne Université, Paris, France.
Front Cell Dev Biol. 2021 Feb 9;9:634160. doi: 10.3389/fcell.2021.634160. eCollection 2021.
Transient receptor potential vanilloid subtype 2 (TRPV2) channel is a polymodal receptor regulating neuronal development, cardiac function, immunity and oncogenesis. The activity of TRPV2 is regulated by the molecular interactions in the subplasmalemmel signaling complex. Here by yeast two-hybrid screening of a cDNA library of mouse dorsal root ganglia (DRG) and patch clamp electrophysiology, we identified that flotillin-1, the lipid raft-associated protein, interacts with TRPV2 channel and regulates its function. The interaction between TRPV2 and flotillin-1 was validated through co-immuoprecipitation using endogenous DRG neurons and the recombinant expression model in HEK 293T cells. Fluorescent imaging and bimolecular fluorescence complementation (BiFC) further revealed that flotillin-1 and TRPV2 formed a functional complex on the cell membrane. The presence of flotillin-1 enhanced the whole-cell current density of TRPV2 via increasing its surface expression levels. Using site-specific mapping, we also uncovered that the SPFH (stomatin, prohibitin, flotillin, and HflK/C) domain of flotillin-1 interacted with TRPV2 N-termini and transmembrane domains 1-4, respectively. Our findings therefore demonstrate that flotillin-1 is a key element in TRPV2 signaling complex and modulates its cellular response.
瞬时受体电位香草酸亚型2(TRPV2)通道是一种多模式受体,可调节神经元发育、心脏功能、免疫和肿瘤发生。TRPV2的活性受质膜下信号复合物中分子相互作用的调节。在这里,通过对小鼠背根神经节(DRG)cDNA文库进行酵母双杂交筛选和膜片钳电生理学方法,我们鉴定出脂筏相关蛋白flotillin-1与TRPV2通道相互作用并调节其功能。利用内源性DRG神经元和HEK 293T细胞中的重组表达模型,通过免疫共沉淀验证了TRPV2与flotillin-1之间的相互作用。荧光成像和双分子荧光互补(BiFC)进一步揭示,flotillin-1和TRPV2在细胞膜上形成了功能复合物。flotillin-1的存在通过增加TRPV2的表面表达水平来增强其全细胞电流密度。通过位点特异性定位,我们还发现flotillin-1的SPFH(stomatin、prohibitin、flotillin和HflK/C)结构域分别与TRPV2的N端和跨膜结构域1-4相互作用。因此,我们的研究结果表明,flotillin-1是TRPV2信号复合物中的关键元件,并调节其细胞反应。