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中间神经元活动通过钙调神经磷酸酶控制内源性大麻素介导的突触前可塑性。

Interneuron activity controls endocannabinoid-mediated presynaptic plasticity through calcineurin.

作者信息

Heifets Boris D, Chevaleyre Vivien, Castillo Pablo E

机构信息

Dominick P Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, NY 10461, USA.

出版信息

Proc Natl Acad Sci U S A. 2008 Jul 22;105(29):10250-5. doi: 10.1073/pnas.0711880105. Epub 2008 Jul 16.

Abstract

Retrograde signaling by endocannabinoids (eCBs) mediates a widely expressed form of long-term depression at excitatory and inhibitory synapses (eCB-LTD), involving a reduction in neurotransmitter release. In the hippocampus, eCB-LTD occurs at interneuron (IN)-pyramidal cell (PC) synapses (I-LTD), and its induction requires a presynaptic reduction of cAMP/PKA signaling resulting from minutes of type 1 cannabinoid receptor (CB1R) activation. Although repetitive activity of glutamatergic synapses initiates the eCB mobilization required for I-LTD, it is unclear whether CB1R-containing GABAergic terminals are passive targets of eCBs or whether they actively contribute to induction. Here, we show that the minutes-long induction period for I-LTD may serve as a window to integrate associated spontaneous activity in the same IN receiving the retrograde eCB signal. Indeed, reducing spontaneous IN firing blocked I-LTD, which could be rescued with extra stimulation of inhibitory afferents. Moreover, cell pair recordings showed that a single IN expressed LTD onto a PC only if it was active during eCB signaling. Several methods of disrupting presynaptic Ca(2+) dynamics all blocked I-LTD, strongly suggesting that IN spikes regulate I-LTD by raising Ca(2+) at the nerve terminal. Finally, inhibiting the Ca(2+)-activated phosphatase, calcineurin, fully blocked I-LTD, but blocking another phosphatase did not. Our findings support a model where both CB1R signaling and IN activity shift the balance of kinase and phosphatase activity in the presynaptic terminal to induce I-LTD.

摘要

内源性大麻素(eCBs)介导的逆行信号传导在兴奋性和抑制性突触处介导了一种广泛表达的长时程抑制形式(eCB-LTD),涉及神经递质释放的减少。在海马体中,eCB-LTD发生在中间神经元(IN)-锥体细胞(PC)突触处(I-LTD),其诱导需要1型大麻素受体(CB1R)激活数分钟后导致的cAMP/PKA信号在突触前的减少。尽管谷氨酸能突触的重复活动启动了I-LTD所需的eCB动员,但尚不清楚含有CB1R的GABA能终末是eCBs的被动靶点还是它们积极参与诱导过程。在这里,我们表明I-LTD长达数分钟的诱导期可能作为一个窗口来整合同一接受逆行eCB信号的IN中的相关自发活动。事实上,减少自发的IN放电会阻断I-LTD,而额外刺激抑制性传入神经可以挽救这种阻断。此外,细胞对记录显示,只有当单个IN在eCB信号传导期间活跃时,它才会在PC上表达LTD。几种破坏突触前Ca(2+)动力学的方法都阻断了I-LTD,强烈表明IN放电通过在神经末梢升高Ca(2+)来调节I-LTD。最后,抑制Ca(2+)激活的磷酸酶钙调神经磷酸酶完全阻断了I-LTD,但阻断另一种磷酸酶则没有。我们的研究结果支持了一种模型,其中CB1R信号传导和IN活动都改变了突触前终末激酶和磷酸酶活性之间的平衡,从而诱导I-LTD。

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