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MEK Inhibitor U0126 Reverses Protection of Axons from Wallerian Degeneration Independently of MEK–ERK Signaling

机译:MEK抑制剂U0126独立于MEK–ERK信号而逆转轴突免受瓦勒变性的保护

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摘要

Wallerian degeneration is delayed when sufficient levels of proteins with NMNAT activity are maintained within axons after injury. This has been proposed to form the basis of 'slow Wallerian degeneration' (Wld S), a neuroprotective phenotype conferred by an aberrant fusion protein, WldS. Proteasome inhibition also delays Wallerian degeneration, although much less robustly, with stabilization of NMNAT2 likely to play a key role in this mechanism. The pan-MEK inhibitor U0126 has previously been shown to reverse the axon-protective effects of proteasome inhibition, suggesting that MEK-ERK signaling plays a role in delayed Wallerian degeneration, in addition to its established role in promoting neuronal survival. Here we show that whilst U0126 can also reverse WldS-mediated axon protection, more specific inhibitors of MEK1/2 and MEK5, PD184352 and BIX02189, have no significant effect on the delay to Wallerian degeneration in either situation, whether used alone or in combination. This suggests that an off-target effect of U0126 is responsible for reversion of the axon protective effects of WldS expression or proteasome inhibition, rather than inhibition of MEK1/2-ERK1/2 or MEK5-ERK5 signaling. Importantly, this off-target effect does not appear to result in alterations in the stabilities of either WldS or NMNAT2.
机译:当损伤后轴突内保持足够水平的具有NMNAT活性的蛋白质时,沃勒变性就被延迟了。已经提出这是形成“慢沃勒氏变性”(Wld S )的基础,Wld S 是异常融合蛋白Wld S 赋予的神经保护表型。蛋白酶体的抑制作用也延迟了Wallerian变性,尽管作用不那么牢固,而NMNAT2的稳定化可能在该机制中起关键作用。以前已显示出pan-MEK抑制剂U0126可以逆转蛋白酶体抑制的轴突保护作用,这表明MEK-ERK信号除了​​在促进神经元存活中已确立的作用外,还可以在延迟的Wallerian变性中发挥作用。在这里,我们表明,尽管U0126还可以逆转Wld S 介导的轴突保护,但MEK1 / 2和MEK5,PD184352和BIX02189的更特异性抑制剂对这两种情况下的Wallerian变性延迟均无明显影响,无论是单独使用还是结合使用。这表明U0126的脱靶作用是导致Wld S 表达或蛋白酶体抑制而不是MEK1 / 2-ERK1 / 2或MEK5-ERK5信号转导的轴突保护作用逆转的原因。 。重要的是,这种脱靶效应似乎不会导致Wld S 或NMNAT2的稳定性发生变化。

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