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Activation of Trk neurotrophin receptors by glucocorticoids provides a neuroprotective effect

机译:糖皮质激素激活Trk神经营养蛋白受体具有神经保护作用

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摘要

Glucocorticoids (GCs) display both protective and destructive effects in the nervous system. In excess, GCs produce neuronal damage after stress or brain injury; however, the neuroprotective effects of adrenal steroids also have been reported. The mechanisms that account for the positive actions are not well understood. Here we report that GCs can selectively activate Trk receptor tyrosine kinases after in vivo administration in the brain and in cultures of hippocampal and cortical neurons. Trk receptors are normally activated by neurotrophins, such as NGF and brain-derived neurotrophic factor, but the activation of Trk receptors by GCs does not depend on increased production of neurotrophins. Other tyrosine kinase receptors, such as EGF and FGF receptors, were not activated by GCs. The ability of GCs to increase Trk receptor activity resulted in the neuroprotection of neurons deprived of trophic support and could be modulated by steroid-converting enzymes. Pharmacological and shRNA experiments indicate that Trk receptor activation by GCs depends on a genomic action of the GC receptor. The ability of GCs to promote Trk receptor activity represents a molecular mechanism that integrates the actions of GCs and neurotrophins.
机译:糖皮质激素(GCs)在神经系统中显示保护性和破坏性作用。过量的GC会在压力或脑损伤后产生神经元损伤。然而,肾上腺类固醇的神经保护作用也已有报道。对于积极行动的机制还没有很好的理解。在这里,我们报告说,在大脑,海马和皮层神经元培养物中进行体内给药后,GC可以选择性激活Trk受体酪氨酸激酶。 Trk受体通常由神经营养蛋白激活,例如NGF和脑源性神经营养因子,但是GC激活Trk受体并不依赖于神经营养蛋白产量的增加。其他酪氨酸激酶受体,例如EGF和FGF受体,并未被GC激活。气相色谱增加Trk受体活性的能力导致神经元的神经保护被剥夺了营养支持,并可以由类固醇转化酶调节。药理和shRNA实验表明,GC激活Trk受体取决于GC受体的基因组作用。 GC促进Trk受体活性的能力代表了整合GC和神经营养蛋白作用的分子机制。

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