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Synaptic membrane rafts: traffic lights for local neurotrophin signaling?

机译:突触膜筏:用于局部神经营养蛋白信号传导的交通灯?

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摘要

Lipid rafts, cholesterol and lipid rich microdomains, are believed to play important roles as platforms for the partitioning of transmembrane and synaptic proteins involved in synaptic signaling, plasticity, and maintenance. There is increasing evidence of a physical interaction between post-synaptic densities and post-synaptic lipid rafts. Localization of proteins within lipid rafts is highly regulated, and therefore lipid rafts may function as traffic lights modulating and fine-tuning neuronal signaling. The tyrosine kinase neurotrophin receptors (Trk) and the low-affinity p75 neurotrophin receptor (p75NTR) are enriched in neuronal lipid rafts together with the intermediates of downstream signaling pathways, suggesting a possible role of rafts in neurotrophin signaling. Moreover, neurotrophins and their receptors are involved in the regulation of cholesterol metabolism. Cholesterol is an important component of lipid rafts and its depletion leads to gradual loss of synapses, underscoring the importance of lipid rafts for proper neuronal function. Here, we review and discuss the idea that translocation of neurotrophin receptors in synaptic rafts may account for the selectivity of their transduced signals.
机译:脂质筏,富含胆固醇和脂质的微区被认为在跨膜和突触蛋白的分配中起着重要作用,跨膜和突触蛋白参与突触信号传导,可塑性和维持。越来越多的证据表明突触后密度与突触后脂质筏之间存在物理相互作用。脂质筏中蛋白质的定位受到高度调节,因此脂质筏可能起交通信号灯的作用,并调节神经元信号传导。酪氨酸激酶神经营养蛋白受体(Trk)和低亲和力p75神经营养蛋白受体(p75 NTR )富含神经元脂质筏以及下游信号通路的中间体,表明筏可能在神经营养蛋白中发挥作用信号。此外,神经营养蛋白及其受体参与胆固醇代谢的调节。胆固醇是脂质筏的重要组成部分,胆固醇的耗尽导致突触逐渐消失,从而突出了脂质筏对神经元正常功能的重要性。在这里,我们审查和讨论的想法,神经营养蛋白受体在突触筏中的易位可能占其转导信号的选择性。

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