Hennigan Amy, Trotter Claire, Kelly Aine M
Department of Physiology, School of Medicine, University of Dublin, Trinity College, Dublin 2, Ireland.
Brain Res. 2007 Jan 26;1130(1):158-66. doi: 10.1016/j.brainres.2006.10.066. Epub 2006 Dec 14.
The role of the neurotrophins, including nerve growth factor, in synaptic plasticity is well established. These proteins exert their effects via activation of Trk receptor tyrosine kinases and the p75 neurotrophin receptor (p75NTR). While Trk receptor activation is associated with functions such as cell survival, learning and enhancement of synaptic transmission, p75NTR can modulate long-term depression and has been reported to be a regulator of apoptosis. Peripheral administration of lipopolysaccharide (LPS) has been shown to exert a number of effects centrally, including inhibition of hippocampal synaptic plasticity. Here we report that LPS induces a blockade of long-term potentiation and recognition memory that is concomitant with increased expression of the p75NTR in dentate gyrus. In addition, LPS blocks plasticity-associated changes in nerve growth factor expression, TrkA activation and extracellular signal-regulated kinase activation. These data are consistent with the hypothesis that synaptic plasticity in the dentate gyrus is associated with changes in neurotrophin signaling and that the inhibition of these plastic changes by LPS may be due in part to its ability to impact on these signaling cascades.
神经营养因子,包括神经生长因子,在突触可塑性中的作用已得到充分证实。这些蛋白质通过激活Trk受体酪氨酸激酶和p75神经营养因子受体(p75NTR)发挥作用。虽然Trk受体激活与细胞存活、学习和突触传递增强等功能相关,但p75NTR可调节长时程抑制,并且据报道是细胞凋亡的调节因子。外周给予脂多糖(LPS)已被证明会在中枢产生多种影响,包括抑制海马突触可塑性。在此我们报告,LPS诱导长时程增强和认知记忆的阻断,这与齿状回中p75NTR表达增加同时发生。此外,LPS阻断神经生长因子表达、TrkA激活和细胞外信号调节激酶激活中与可塑性相关的变化。这些数据与以下假设一致,即齿状回中的突触可塑性与神经营养因子信号传导的变化相关,并且LPS对这些可塑性变化的抑制可能部分归因于其影响这些信号级联反应的能力。