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Growth of neurites toward neurite- neurite contact sites increases synaptic clustering and secretion and is regulated by synaptic activity.

机译:神经突朝神经突接触部位的生长增加了突触聚类和分泌,并受突触活动的调节。

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The integrative properties of dendrites are determined by several factors, including their morphology and the spatio-temporal patterning of their synaptic inputs. One of the great challenges is to discover the interdependency of these two factors and the mechanisms which sculpt dendrites' fine morphological details. We found a novel form of neurite growth behavior in neuronal cultures of the hippocampus and cortex, when axons and dendrites grew directly toward neurite-neurite contact sites and crossed them, forming multi-neurite intersections (MNIs). MNIs were found at a frequency higher than obtained by computer simulations of randomly distributed dendrites, involved many of the dendrites and were stable for days. They were formed specifically by neurites originating from different neurons and were extremely rare among neurites of individual neurons or among astrocytic processes. Axonal terminals were clustered at MNIs and exhibited higher synaptophysin content and release capability than in those located elsewhere. MNI formation, as well as enhancement of axonal terminal clustering and secretion at MNIs, was disrupted by inhibitors of synaptic activity. Thus, convergence of axons and dendrites to form MNIs is a non-random activity-regulated wiring behavior which shapes dendritic trees and affects the location, clustering level and strength of their presynaptic inputs.
机译:树突的整合性质由几个因素确定,包括它们的形态和它们的突触输入的时空图案。其中一个巨大的挑战是发现这两个因素的相互依赖性和雕刻树突的细节细节的机制。我们在海马和皮质的神经元培养方面发现了一种新的神经元生长行为形式,当轴突和树突直接朝向神经突 - 神经突接触位点并越过它们,形成多神经态交叉点(MNI)。 MNI的频率比通过计算机模拟的随机分布的树枝状体的计算机模拟获得,涉及许多树枝状,并且稳定天。它们是由源自不同神经元的神经疾病组成的,并且在个体神经元或星形胶质细胞过程中非常罕见。在MNIS聚集轴向终端,并且表现出较高的突触蛋白含量和释放能力,而不是在其他地方的粘合剂。 MNI形成,以及突触症的轴突末端聚类和分泌的增强,突触活动抑制剂破坏。因此,形成MNI的轴突和树突的收敛性是一种非随机活动调节的布线行为,其形状树枝状树木并影响其突触前输入的位置,聚类水平和强度。

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