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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Fibronectin stimulates TRPV1 translocation in primary sensory neurons.
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Fibronectin stimulates TRPV1 translocation in primary sensory neurons.

机译:纤连蛋白刺激初级感觉神经元中的TRPV1易位。

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Extracellular matrix (ECM) molecules are highly variable in their composition and receptor recognition. Their ubiquitous expression profile has been linked to roles in cell growth, differentiation, and survival. Recent work has identified certain ECM molecules that serve as dynamic signal modulators, versus the more-recognized role of chronic modulation of signal transduction. In this study, we investigated the role that fibronectin (FN) plays in the dynamic modulation of transient receptor potential family V type 1 receptor (TRPV1) translocation to the plasma membrane in trigeminal ganglia (TG) sensory neurons. Confocal immunofluorescence analyses identify co-expression of the TRPV1 receptor with integrin subunits that bind FN. TG neurons cultured upon or treated with FN experienced a leftward shift in the EC(50) of capsaicin-stimulated neuropeptide release. This FN-induced increase in TRPV1 sensitivity to activation is coupled by an increase in plasma membrane expression of TRPV1, as well as an increase in tyrosine phosphorylation of TRPV1 in TG neurons. Furthermore, TG neurons cultured on FN demonstrated an increase in capsaicin-mediated Ca(2+) accumulation relative to neurons cultured on poly-D-lysine. Data presented from these studies indicate that FN stimulates tyrosine-phosphorylation-dependent translocation of the TRPV1 receptor to the plasma membrane, identifying FN as a critical component of the ECM capable of sensory neuron sensitization.
机译:细胞外基质(ECM)分子在组成和受体识别方面差异很大。它们无处不在的表达谱与细胞生长,分化和存活中的作用有关。最近的工作已经确定了某些ECM分子可以用作动态信号调制器,而不是人们公认的信号转导的慢性调制作用。在这项研究中,我们调查了纤连蛋白(FN)在瞬态受体电位家族V型1受体(TRPV1)易位至三叉神经节(TG)感觉神经元质膜的动态调节中发挥的作用。共聚焦免疫荧光分析确定TRPV1受体与结合FN的整联蛋白亚基的共表达。经FN处理或用FN处理的TG神经元在辣椒素刺激的神经肽释放的EC(50)中经历了向左移动。 FN诱导的TRPV1对激活的敏感性增加与TG神经元中TRPV1的质膜表达增加以及TRPV1的酪氨酸磷酸化增加有关。此外,在FN上培养的TG神经元显示辣椒素介导的Ca(2+)积累相对于在聚D-赖氨酸上培养的神经元有所增加。这些研究提供的数据表明,FN刺激了酪氨酸磷酸化依赖的TRPV1受体向质膜的移位,从而将FN鉴定为能够感知神经元的ECM的重要组成部分。

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