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大麻素受体相互作用蛋白Crip1a调节小鼠海马体中的CB1受体信号传导。

Cannabinoid receptor-interacting protein Crip1a modulates CB1 receptor signaling in mouse hippocampus.

作者信息

Guggenhuber Stephan, Alpar Alan, Chen Rongqing, Schmitz Nina, Wickert Melanie, Mattheus Tobias, Harasta Anne E, Purrio Martin, Kaiser Nadine, Elphick Maurice R, Monory Krisztina, Kilb Werner, Luhmann Heiko J, Harkany Tibor, Lutz Beat, Klugmann Matthias

机构信息

Institute of Physiological Chemistry, University Medical Center of the Johannes Gutenberg University, 55128, Mainz, Germany.

Division of Molecular Neurobiology, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Scheeles väg 1:A1, 17177, Stockholm, Sweden.

出版信息

Brain Struct Funct. 2016 May;221(4):2061-74. doi: 10.1007/s00429-015-1027-6. Epub 2015 Mar 15.

Abstract

The cannabinoid type 1 receptor (Cnr1, CB1R) mediates a plethora of physiological functions in the central nervous system as a presynaptic modulator of neurotransmitter release. The recently identified cannabinoid receptor-interacting protein 1a (Cnrip1a, CRIP1a) binds to the C-terminal domain of CB1R, a region known to be important for receptor desensitization and internalization. Evidence that CRIP1a and CB1R interact in vivo has been reported, but the neuroanatomical distribution of CRIP1a is unknown. Moreover, while alterations of hippocampal CRIP1a levels following limbic seizures indicate a role in controlling excessive neuronal activity, the physiological function of CRIP1a in vivo has not been investigated. In this study, we analyzed the spatial distribution of CRIP1a in the hippocampus and examined CRIP1a as a potential modulator of CB1R signaling. We found that Cnrip1a mRNA is co-expressed with Cnr1 mRNA in pyramidal neurons and interneurons of the hippocampal formation. CRIP1a protein profiles were largely segregated from CB1R profiles in mossy cell terminals but not in hippocampal CA1 region. CB1R activation induced relocalization to close proximity with CRIP1a. Adeno-associated virus-mediated overexpression of CRIP1a specifically in the hippocampus revealed that CRIP1a modulates CB1R activity by enhancing cannabinoid-induced G protein activation. CRIP1a overexpression extended the depression of excitatory currents by cannabinoids in pyramidal neurons of the hippocampus and diminished the severity of chemically induced acute epileptiform seizures. Collectively, our data indicate that CRIP1a enhances hippocampal CB1R signaling in vivo.

摘要

1型大麻素受体(Cnr1,CB1R)作为神经递质释放的突触前调节剂,介导中枢神经系统中的多种生理功能。最近鉴定出的大麻素受体相互作用蛋白1a(Cnrip1a,CRIP1a)与CB1R的C末端结构域结合,该区域已知对受体脱敏和内化很重要。已有报道称CRIP1a和CB1R在体内相互作用,但CRIP1a的神经解剖分布尚不清楚。此外,虽然边缘性癫痫发作后海马体中CRIP1a水平的改变表明其在控制过度神经元活动中起作用,但CRIP1a在体内的生理功能尚未得到研究。在本研究中,我们分析了CRIP1a在海马体中的空间分布,并将CRIP1a作为CB1R信号传导的潜在调节剂进行了研究。我们发现Cnrip1a mRNA在海马结构的锥体神经元和中间神经元中与Cnr1 mRNA共表达。CRIP1a蛋白分布在苔藓细胞终末中与CB1R分布在很大程度上分离,但在海马CA1区并非如此。CB1R激活诱导其重新定位至与CRIP1a紧密相邻。腺相关病毒介导的CRIP1a在海马体中的特异性过表达表明,CRIP1a通过增强大麻素诱导的G蛋白激活来调节CB1R活性。CRIP1a过表达延长了大麻素对海马锥体神经元兴奋性电流的抑制作用,并减轻了化学诱导的急性癫痫样发作的严重程度。总体而言,我们的数据表明CRIP1a在体内增强了海马体中的CB1R信号传导。

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