Faculty of Medicine, ICAR3R-Interdisciplinary Centre for 3Rs in Animal Research, Justus Liebig University Giessen, Rudolf-Buchheim-Straße 6, Giessen, D-35392, Germany.
Neuroscience Center, Institute of Clinical Neuroanatomy, Goethe University Frankfurt, Frankfurt am Main, 60528, Germany.
Open Biol. 2023 Aug;13(8):230063. doi: 10.1098/rsob.230063. Epub 2023 Aug 2.
Dendritic spines are crucial for excitatory synaptic transmission as the size of a spine head correlates with the strength of its synapse. The distribution of spine head sizes follows a lognormal-like distribution with more small spines than large ones. We analysed the impact of synaptic activity and plasticity on the spine size distribution in adult-born hippocampal granule cells from rats with induced homo- and heterosynaptic long-term plasticity and CA1 pyramidal cells from Munc13-1/Munc13-2 knockout mice with completely blocked synaptic transmission. Neither the induction of extrinsic synaptic plasticity nor the blockage of presynaptic activity degrades the lognormal-like distribution but changes its mean, variance and skewness. The skewed distribution develops early in the life of the neuron. Our findings and their computational modelling support the idea that intrinsic synaptic plasticity is sufficient for the generation, while a combination of intrinsic and extrinsic synaptic plasticity maintains lognormal-like distribution of spines.
树突棘是兴奋性突触传递的关键,因为棘突头的大小与突触的强度相关。棘突头大小的分布遵循类似于对数正态分布的模式,即小棘突比大棘突多。我们分析了突触活动和可塑性对诱导的同型和异型长时程可塑性的成年新生海马颗粒细胞和完全阻断突触传递的 Munc13-1/Munc13-2 敲除小鼠 CA1 锥体神经元的棘突大小分布的影响。外在突触可塑性的诱导或突触前活动的阻断都不会降低对数正态分布,但会改变其平均值、方差和偏度。偏斜分布在神经元的早期生命中就已经形成。我们的发现及其计算模型支持这样一种观点,即内在突触可塑性足以产生这种分布,而内在和外在突触可塑性的结合则维持了棘突的对数正态分布。