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首页> 外文期刊>Communications Biology >CaMello-XR enables visualization and optogenetic control of G q/11 signals and receptor trafficking in GPCR-specific domains
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CaMello-XR enables visualization and optogenetic control of G q/11 signals and receptor trafficking in GPCR-specific domains

机译:Camello-XR能够在GPCR特异性域中的G Q / 11信号和受体贩运的可视化和光学控制

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The signal specificity of G protein-coupled receptors (GPCRs) including serotonin receptors (5-HT-R) depends on the trafficking and localization of the GPCR within its subcellular signaling domain. Visualizing traffic-dependent GPCR signals in neurons is difficult, but important to understand the contribution of GPCRs to synaptic plasticity. We engineered CaMello (Ca2+-melanopsin-local-sensor) and CaMello-5HT2A for visualization of traffic-dependent Ca2+ signals in 5-HT2A-R domains. These constructs consist of the light-activated Gq/11 coupled melanopsin, mCherry and GCaMP6m for visualization of Ca2+ signals and receptor trafficking, and the 5-HT2A C-terminus for targeting into 5-HT2A-R domains. We show that the specific localization of the GPCR to its receptor domain drastically alters the dynamics and localization of the intracellular Ca2+ signals in different neuronal populations in vitro and in vivo. The CaMello method may be extended to every GPCR coupling to the Gq/11 pathway to help unravel new receptor-specific functions in respect to synaptic plasticity and GPCR localization. Dennis Eickelbeck et al. engineered light-activated constructs, CaMello and CaMello-5HT2A, which are targeted to the 5HT2A-R domains and enable visualization of calcium signals and receptor trafficking in response to activation. The reported CaMello tool could be applied to other GPCRs coupled to the Gq/11 signaling pathways which may shed light on mechanisms of GPCR localization and plasticity.
机译:G蛋白偶联受体(GPCR)的信号特异性包括血清素受体(5-HT-R)取决于GPCR在其亚细胞信号结构域内的贩运和定位。在神经元中可视化依赖于流量的GPCR信号很难,但是要了解GPCRS对突触可塑性的贡献很重要。我们在5-HT2A-R结构域中设计了Camello(CA2 + -Melanopsin-Local-Sensor)和Cabello-5HT2A,用于可视化交通相关的CA +信号。这些构建体由光活化的GQ / 11偶联的黑色素,MCHERRY和GCAMP6M组成,用于可视化CA2 +信号和受体运输,以及用于靶向5-HT2A-R结构域的5-HT2A C-末端。我们表明GPCR到其受体结构域的特定定位大大改变了体外和体内不同神经元群体中细胞内Ca2 +信号的动态和定位。 Camello方法可以扩展到GQ / 11途径的每一个GPCR偶联,以帮助在突触塑性和GPCR定位方面解开新的受体特异性功能。 Dennis Eickelbeck等。设计为5HT2A-R结构域的工程光活化构建体,CAMELLO和CAMELLO-5HT2A,并能够响应于激活而可视化钙信号和受体随身贩运。报告的Camello工具可以应用于耦合到GQ / 11信号传导途径的其他GPCR,其可以阐明GPCR定位和可塑性的机制。

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