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Functional interaction between p75NTR and TrkA: the endocytic trafficking of p75NTR is driven by TrkA and regulates TrkA-mediated signalling.

机译:p75NTR和TrkA之间的功能相互作用:p75NTR的内吞运输受TrkA驱动,并调节TrkA介导的信号传导。

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摘要

The topology and trafficking of receptors play a key role in their signalling capability. Indeed, receptor function is related to the microenvironment inside the cell, where specific signalling molecules are compartmentalized. The response to NGF (nerve growth factor) is strongly dependent on the trafficking of its receptor, TrkA. However, information is still scarce about the role of the cellular localization of the TrkA co-receptor, p75NTR (where NTR is neurotrophin receptor), following stimulation by NGF. It has been shown that these two receptors play a key role in epithelial tissue and in epithelial-derived tumours, where the microenvironment at the plasma membrane is defined by the presence of tight junctions. Indeed, in thyroid carcinomas, rearrangements of TrkA are frequently found, which produce TrkA mutants that are localized exclusively in the cytoplasm. We used a thyroid cellular model in which it was possible to dissect the trafficking of the two NGF receptors upon neurotrophin stimulation. In FRT (Fischer rat thyroid) cells, endogenous TrkA is localized exclusively on the basolateral surface, while transfected p75NTR is selectively distributed on the apical membrane. This cellular system enabled us to selectively stimulate either p75NTR or TrkA and to analyse the role of receptor trafficking in their signalling capability. We found that, after binding to NGF, p75NTR was co-immunoprecipitated with TrkA and was transcytosed at the basolateral membrane. We showed that the TrkA-p75NTR interaction is necessary for this relocation of p75NTR to the basolateral side. Interestingly, TrkA-specific stimulation by basolateral NGF loading also induced the TrkA-p75NTR interaction and subsequent p75NTR transcytosis at the basolateral surface. Moreover, specific stimulation of p75NTR by NGF activated TrkA and the MAPK (mitogen-activated protein kinase) pathway. Our data indicate that TrkA regulates the subcellular localization of p75NTR upon stimulation with neurotrophins, thus affecting the topology of the signal transduction molecules, driving the activation of a specific signal transduction pathway.
机译:受体的拓扑结构和运输在它们的信号传导能力中起关键作用。实际上,受体功能与细胞内部的微环境有关,在该环境中特定的信号分子被分隔。对NGF(神经生长因子)的反应在很大程度上取决于其受体TrkA的转运。然而,在NGF刺激后,关于TrkA辅助受体p75NTR(其中NTR是神经营养蛋白受体)的细胞定位的作用的信息仍然很少。已经显示,这两种受体在上皮组织和上皮衍生的肿瘤中起关键作用,其中质膜处的微环境由紧密连接的存在来定义。实际上,在甲状腺癌中,经常发现TrkA的重排,其产生仅定位在细胞质中的TrkA突变体。我们使用了甲状腺细胞模型,其中有可能在神经营养蛋白刺激后解剖两个NGF受体的运输。在FRT(费歇尔大鼠甲状腺)细胞中,内源性TrkA仅位于基底外侧表面,而转染的p75NTR选择性地分布在心尖膜上。这种细胞系统使我们能够选择性刺激p75NTR或TrkA,并分析受体运输在其信号传导能力中的作用。我们发现,与NGF结合后,p75NTR与TrkA共同免疫沉淀,并在基底外侧膜上被转胞吞。我们表明,TrkA-p75NTR相互作用是将p75NTR移至基底外侧的必要条件。有趣的是,基底外侧NGF加载对TrkA的特异性刺激也诱导了基底外侧表面的TrkA-p75NTR相互作用和随后的p75NTR转胞吞作用。此外,NGF对p75NTR的特异性刺激激活了TrkA和MAPK(促分裂原激活的蛋白激酶)途径。我们的数据表明,在被神经营养蛋白刺激后,TrkA调节p75NTR的亚细胞定位,从而影响信号转导分子的拓扑结构,从而驱动特定信号转导途径的激活。

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