首页> 美国卫生研究院文献>The Journal of Neuroscience >Transfection with trk restores slow NGF binding efficient NGF uptake and multiple NGF responses to NGF-nonresponsive PC12 cell mutants
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Transfection with trk restores slow NGF binding efficient NGF uptake and multiple NGF responses to NGF-nonresponsive PC12 cell mutants

机译:用trk转染可恢复慢的NGF结合有效的NGF摄取以及对NGF无反应的PC12细胞突变体的多种NGF反应

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摘要

NGF binds to and activates the protein tyrosine kinase gp 140prototrk. Expression of this receptor is required for at least some responses to NGF. Three outstanding issues are addressed in the present work. First, we determined whether expression of gp 140prototrk is required for all neuronal NGF responses. Second, we examined the role of gp 140prototrk in NGF binding and internalization. Third, we addressed the utility of NGF-nonresponsive PC12nnr5 cells for study of the NGF mechanism. In contrast to wild-type PC12 cells, PC12nnr5 cells do not express endogenous gp 140prototrk. We therefore asked whether they possess other defects that compromise NGF signaling pathways. To answer these questions, we transfected PC12nnr5 cells with a cDNA encoding full- length human gp 140prototrk and isolated cell lines permanently expressing the receptor. Introduction of trk rescued all of the many and varied NGF responses assessed, including enhanced protein tyrosine phosphorylation, induction of immediate-early and neural-specific genes, neurite outgrowth and regeneration, maintenance of survival in serum-free medium, and stimulation of AChE activity. In contrast to PC12nnr5 cells, the trk-transfected lines also bind and internalize NGF with wild-type PC12 cell characteristics. These findings indicate that gp 140prototrk is required for many, if not all, responses of neuronal cells to NGF and is necessary for proper NGF binding and internalization. Additionally, as no signaling defect other than the absence of trk expression was revealed in PC12nnr5 cells, this work supports the utility of this line for genetic dissection of the NGF mechanism of action.
机译:NGF结合并激活蛋白酪氨酸激酶gp 140prototrk。该受体的表达是至少对NGF的某些反应所必需的。本工作解决了三个悬而未决的问题。首先,我们确定是否所有神经元NGF反应都需要表达gp 140prototrk。其次,我们研究了gp 140prototrk在NGF结合和内在化中的作用。第三,我们研究了对NGF无反应的PC12nnr5细胞在研究NGF机制中的实用性。与野生型PC12细胞相反,PC12nnr5细胞不表达内源性gp 140prototrk。因此,我们询问它们是否还存在其他损害NGF信号通路的缺陷。为了回答这些问题,我们用编码全长人gp 140prototrk的cDNA和永久表达该受体的分离的细胞系转染了PC12nnr5细胞。引入trk可以挽救所有评估的各种NGF反应,包括增强的蛋白酪氨酸磷酸化,诱导即刻早期和神经特异性基因,神经突长出和再生,在无血清培养基中维持存活以及刺激AChE活性。 。与PC12nnr5细胞相比,trk转染的品系还结合并内化具有野生型PC12细胞特征的NGF。这些发现表明,gp 140prototrk是神经细胞对NGF的许多(即使不是全部)反应所必需的,并且对于正确的NGF结合和内在化也是必需的。另外,由于在PC12nnr5细胞中没有发现除trk表达缺失以外的其他信号缺陷,因此这项工作支持了该谱系用于NGF作用机理的遗传解剖。

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