首页> 外文期刊>Journal of Neuroscience Research >Duration and magnitude of nerve growth factor signaling depend on the ratio of p75LNTR to TrkA.
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Duration and magnitude of nerve growth factor signaling depend on the ratio of p75LNTR to TrkA.

机译:神经生长因子信号传导的持续时间和强度取决于p75LNTR与TrkA的比率。

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摘要

The role of the low affinity neurotrophin receptor p75LNTR in neurotrophin signal transduction remains open. Recent reports show that this receptor generates intracellular signals independent of Trk activity, and others imply that it collaborates with Trk(s) to enhance cellular responses to low neurotrophin concentrations. We have used the Cytosensor microphysiometer as a direct marker of intracellular metabolic activity to address the physiologic role of p75LNTR in nerve growth factor (NGF) signal transduction. NGF treatment of PC12 or TrkA-transfected Chinese hamster ovary (CHO) cells results in a rapid, transient increase in the extracellular acidification rate as measured by the Cytosensor; in both cell types, p75LNTR enhances this response. p75LNTR affects both the magnitude of and the duration of the extracellular acidification response to NGF. Moreover, it is not merely the presence of p75LNTR, but also the ratio of p75LNTR:TrkA which determines cellular responsiveness to NGF. In transiently transfected CHO cells, a 5:1 ratio of p75LNTR:trkA cDNAs produced the greatest change in NGF-induced acid secretion. Pretreatment of PC12 cells with anti-p75LNTR antibodies decreased the responsiveness to NGF. However, long-term NGF exposure to PC12 cells in which p75LNTR expression was decreased to approximately 10% of wild-type levels showed a longer duration of acid secretion compared to wild-type PC12 cells. Together, these data suggest that p75LNTR may play a dual role in modulating NGF signal transduction by enhancing and extending cellular responses to short-term ligand exposures while attenuating the metabolic response to long-term ligand exposures. With regard to potential Trk-independent p75LNTR signal transduction mechanisms, we detected no change in extracellular acidification response in 75LNTR-transfected CHO cells, PCNA-15 fibroblasts, or Schwann cells, all of which express large amounts of p75LNTR and no Trk. Thus, p75LNTR cannot produce any signal detected by microphysiometry in the absence of TrkA.
机译:低亲和力神经营养蛋白受体p75LNTR在神经营养蛋白信号转导中的作用仍然是开放的。最近的报道表明,该受体产生独立于Trk活性的细胞内信号,其他暗示它与Trk协同作用以增强细胞对低神经营养蛋白浓度的反应。我们已经使用细胞传感器微生理仪作为细胞内代谢活动的直接标志,以解决p75LNTR在神经生长因子(NGF)信号转导中的生理作用。 NGF处理PC12或TrkA转染的中国仓鼠卵巢(CHO)细胞后,如细胞传感器所测,其细胞外酸化率迅速而短暂地增加;在两种细胞类型中,p75LNTR均可增强这种反应。 p75LNTR影响NGF的细胞外酸化反应的强度和持续时间。此外,不仅p75LNTR的存在,而且p75LNTR∶TrkA的比例决定了细胞对NGF的反应性。在瞬时转染的CHO细胞中,p75LNTR:trkA cDNAs的5:1比例在NGF诱导的酸分泌中产生了最大的变化。用抗p75LNTR抗体预处理PC12细胞会降低对NGF的反应性。然而,与野生型PC12细胞相比,长期的NGF暴露于其中p75LNTR表达降低至野生型水平的约10%的PC12细胞显示出更长的酸分泌持续时间。总之,这些数据表明,p75LNTR可以通过增强和扩展细胞对短期配体暴露的反应,同时减弱对长期配体暴露的代谢反应,在调节NGF信号转导中起双重作用。关于潜在的不依赖Trk的p75LNTR信号转导机制,我们未检测到75LNTR转染的CHO细胞,PCNA-15成纤维细胞或雪旺氏细胞的细胞外酸化反应的变化,这些细胞均表达大量p75LNTR,而没有Trk。因此,在没有TrkA的情况下,p75LNTR无法产生任何通过显微生理学检测到的信号。

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