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Remodeling of the postsynaptic plasma membrane during neural development

机译:神经发育过程中突触后质膜的重塑

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Neuronal synapses are the fundamental units of neural signal transduction and must maintain exquisite signal fidelity while also accommodating the plasticity that underlies learning and development. To achieve these goals, the molecular composition and spatial organization of synaptic terminals must be tightly regulated; however, little is known about the regulation of lipid composition and organization in synaptic membranes. Here we quantify the comprehensive lipidome of rat synaptic membranes during postnatal development and observe dramatic developmental lipidomic remodeling during the first 60 postnatal days, including progressive accumulation of cholesterol, plasmalogens, and sphingolipids. Further analysis of membranes associated with isolated postsynaptic densities (PSDs) suggests the PSD-associated postsynaptic plasma membrane (PSD-PM) as one specific location of synaptic remodeling. We analyze the biophysical consequences of developmental remodeling in reconstituted synaptic membranes and observe remarkably stable microdomains, with the stability of domains increasing with developmental age. We rationalize the developmental accumulation of microdomain-forming lipids in synapses by proposing a mechanism by which palmitoylation of the immobilized scaffold protein PSD-95 nucleates domains at the postsynaptic plasma membrane. These results reveal developmental changes in lipid composition and palmitoylation that facilitate the formation of postsynaptic membrane microdomains, which may serve key roles in the function of the neuronal synapse.
机译:神经元突触是神经信号转导的基本单位,必须保持精妙的信号保真度,同时还要适应构成学习和发展基础的可塑性。为了实现这些目标,必须严格调节突触末端的分子组成和空间组织。然而,关于突触膜中脂质组成和组织的调控知之甚少。在这里,我们量化了大鼠突触膜在产后发育过程中的综合脂质组,并观察了出生后60天中急剧的脂质组重塑,包括胆固醇,缩醛磷脂和鞘脂的逐步积累。对与孤立的突触后密度(PSDs)相关的膜的进一步分析表明,与PSD相关的突触后质膜(PSD-PM)是突触重塑的一个特定位置。我们分析了重构突触膜中发育重塑的生物物理后果,并观察到了非常稳定的微结构域,该结构域的稳定性随年龄的增长而增加。我们通过提出一种机制,使固定化支架蛋白PSD-95的棕榈酰化在突触后质膜上形成域,从而使突触中形成微结构域的脂质的发育积累合理化。这些结果揭示了脂质组成和棕榈酰化的发展变化,这些变化有助于突触后膜微区的形成,这可能在神经突触的功能中起关键作用。

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