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Nerve growth factor/p75 neurotrophin receptor–mediated sensitization of rat sensory neurons depends on membrane cholesterol

机译:神经生长因子/ p75神经营养因子受体介导的大鼠感觉神经元敏化取决于膜胆固醇

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摘要

Nerve growth factor (NGF) is an important mediator in the initiation of the inflammatory response and NGF via activation of the p75 neurotrophin receptor (p75NTR) and downstream sphingomyelin signaling leads to significant enhancement of the excitability of small diameter sensory neurons. Because of the interaction between sphingomyelin and cholesterol in creating membrane liquid-ordered domains known as membrane or lipid rafts, we examined whether neuronal NGF-induced sensitization via p75NTR was dependent on the integrity of membrane rafts. Here, we demonstrate that the capacity of NGF to enhance the excitability of sensory neurons may result from the interaction of p75NTR with its downstream signaling partner(s) in membrane rafts. Two agents known to disrupt membrane rafts, edelfosine and methyl-β-cyclodextrin (MβCD), block the increase in excitability produced by NGF. In contrast, treatment with MβCD containing saturated amounts of cholesterol does not alter the capacity of NGF to augment excitability. In addition, adding back MβCD with cholesterol restored the NGF-induced sensitization in previously cholesterol-depleted neurons, suggesting that cholesterol and the structural integrity of rafts are key in promoting NGF-mediated sensitization. Using established protocols to isolate detergent-resistant membranes, both p75NTR and the neuronal membrane raft marker, flotillin, localize to raft fractions. These results suggest that downstream signaling partners interacting with p75NTR in sensory neurons are associated with membrane raft signaling platforms.
机译:神经生长因子(NGF)是通过激活p75神经营养因子受体(p75 NTR )激活炎症反应和NGF的重要介质,下游鞘磷脂信号传导可显着增强小分子的兴奋性。直径感觉神经元。由于鞘磷脂和胆固醇之间的相互作用会产生膜液有序的结构域,称为膜筏或脂质筏,因此我们研究了神经元NGF通过p75 NTR 引起的敏化是否依赖于膜筏的完整性。在这里,我们证明NGF增强感觉神经元兴奋性的能力可能是由于p75 NTR 与膜筏中下游信号伴侣的相互作用所致。已知能破坏膜筏的两种药物,依德福星和甲基-β-环糊精(MβCD),可阻止NGF产生的兴奋性增加。相反,用含有饱和胆固醇的MβCD进行治疗不会改变NGF增强兴奋性的能力。另外,在胆固醇中添加MβCD可以恢复以前缺乏胆固醇的神经元对NGF的致敏作用,这表明胆固醇和筏的结构完整性是促进NGF介导的致敏作用的关键。使用已建立的方案分离耐去污剂的膜,p75 NTR 和神经元膜筏标记物弗洛蒂林都位于筏部分。这些结果表明,在感觉神经元中与p75 NTR 相互作用的下游信号伴侣与膜筏信号平台有关。

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