Valtcheva Silvana, Paillé Vincent, Dembitskaya Yulia, Perez Sylvie, Gangarossa Giuseppe, Fino Elodie, Venance Laurent
Dynamics and Pathophysiology of Neuronal Networks Team, Center for Interdisciplinary Research in Biology, Collège de France, CNRS UMR7241/INSERM U1050, MemoLife Labex Paris, France.
Dynamics and Pathophysiology of Neuronal Networks Team, Center for Interdisciplinary Research in Biology, Collège de France, CNRS UMR7241/INSERM U1050, MemoLife Labex Paris, France.
Neuropharmacology. 2017 Jul 15;121:261-277. doi: 10.1016/j.neuropharm.2017.04.012. Epub 2017 Apr 10.
Activity-dependent long-term potentiation (LTP) and depression (LTD) of synaptic strength underlie multiple forms of learning and memory. Spike-timing-dependent plasticity (STDP) has been described as a Hebbian synaptic learning rule that could account for experience-dependent changes in neural networks, but little is known about whether and how STDP evolves during development. We previously showed that GABAergic signaling governs STDP polarity and thus operates as a Hebbian/anti-Hebbian switch in the striatum. Although GABAergic networks are subject to important developmental maturation, it remains unclear whether STDP is developmentally shaped by GABAergic signaling. Here, we investigated whether STDP rules are developmentally regulated at corticostriatal synapses in the dorsolateral striatum. We found that striatal STDP displays unidirectional plasticity (Hebbian tLTD) in young rats (P) whereas STDP is bidirectional and anti-Hebbian in juvenile (P) and adult (P) rats. We also provide evidence that the appearance of tonic (extrasynaptic) GABAergic signaling from the juvenile stage is a crucial factor in shaping STDP rules during development, establishing bidirectional anti-Hebbian STDP in the adult striatum. Thus, developmental maturation of GABAergic signaling tightly drives the polarity of striatal plasticity.
突触强度的活动依赖性长期增强(LTP)和抑制(LTD)是多种学习和记忆形式的基础。 spike时间依赖性可塑性(STDP)被描述为一种赫布突触学习规则,可以解释神经网络中依赖于经验的变化,但关于STDP在发育过程中是否以及如何演变知之甚少。我们之前表明,GABA能信号传导控制STDP极性,因此在纹状体中作为赫布/反赫布开关起作用。尽管GABA能网络经历重要的发育成熟,但尚不清楚STDP是否在发育上由GABA能信号传导塑造。在这里,我们研究了背外侧纹状体中皮质纹状体突触处的STDP规则是否在发育过程中受到调节。我们发现,纹状体STDP在幼鼠(P)中表现出单向可塑性(赫布tLTD),而在幼年(P)和成年(P)大鼠中STDP是双向和反赫布的。我们还提供证据表明,从幼年阶段开始的强直(突触外)GABA能信号的出现是在发育过程中塑造STDP规则的关键因素,在成年纹状体中建立双向反赫布STDP。因此,GABA能信号的发育成熟紧密驱动纹状体可塑性的极性。