Menegon Andrea, Bonanomi Dario, Albertinazzi Chiara, Lotti Francesco, Ferrari Giuliana, Kao Hung-Teh, Benfenati Fabio, Baldelli Pietro, Valtorta Flavia
San Raffaele Scientific Institute and Vita-Salute University, 20132 Milan, Italy.
J Neurosci. 2006 Nov 8;26(45):11670-81. doi: 10.1523/JNEUROSCI.3321-06.2006.
Protein kinase A (PKA) modulates several steps of synaptic transmission. However, the identification of the mediators of these effects is as yet incomplete. Synapsins are synaptic vesicle (SV)-associated phosphoproteins that represent the major presynaptic targets of PKA. We show that, in hippocampal neurons, cAMP-dependent pathways affect SV exocytosis and that this effect is primarily brought about through synapsin I phosphorylation. Phosphorylation by PKA, by promoting dissociation of synapsin I from SVs, enhances the rate of SV exocytosis on stimulation. This effect becomes relevant when neurons are challenged with sustained stimulation, because it appears to counteract synaptic depression and accelerate recovery from depression by fostering the supply of SVs from the reserve pool to the readily releasable pool. In contrast, synapsin phosphorylation appears to be dispensable for the effects of cAMP on the frequency and amplitude of spontaneous synaptic currents and on the amplitude of evoked synaptic currents. The modulation of depolarization-evoked SV exocytosis by PKA phosphorylation of synapsin I is primarily caused by calmodulin (CaM)-dependent activation of cAMP pathways rather than by direct activation of CaM kinases. These data define a hierarchical crosstalk between cAMP- and CaM-dependent cascades and point to synapsin as a major effector of PKA in the modulation of activity-dependent SV exocytosis.
蛋白激酶A(PKA)调节突触传递的多个步骤。然而,这些效应的介导因子的鉴定尚未完成。突触结合蛋白是与突触小泡(SV)相关的磷蛋白,是PKA主要的突触前靶点。我们发现,在海马神经元中,cAMP依赖性途径影响突触小泡胞吐作用,且这种效应主要是通过突触结合蛋白I的磷酸化实现的。PKA磷酸化通过促进突触结合蛋白I从突触小泡上解离,提高了刺激时突触小泡胞吐作用的速率。当神经元受到持续刺激时,这种效应变得至关重要,因为它似乎通过促进储备池中的突触小泡向易释放池的供应来对抗突触抑制并加速从抑制状态的恢复。相比之下,突触结合蛋白磷酸化对于cAMP对自发突触电流的频率和幅度以及诱发突触电流的幅度的影响似乎是可有可无的。突触结合蛋白I的PKA磷酸化对去极化诱发的突触小泡胞吐作用的调节主要是由钙调蛋白(CaM)依赖性激活cAMP途径引起的,而不是由CaM激酶的直接激活引起的。这些数据定义了cAMP依赖性和CaM依赖性级联反应之间的分层串扰,并指出突触结合蛋白是PKA在调节活动依赖性突触小泡胞吐作用中的主要效应器。