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MAPK signaling promotes axonal degeneration by speeding the turnover of the axonal maintenance factor NMNAT2

机译:MAPK信号传导通过加速轴突维持因子NMNAT2的更新来促进轴突变性

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摘要

Injury-induced (Wallerian) axonal degeneration is regulated via the opposing actions of pro-degenerative factors such as SARM1 and a MAPK signal and pro-survival factors, the most important of which is the NAD+ biosynthetic enzyme NMNAT2 that inhibits activation of the SARM1 pathway. Here we investigate the mechanism by which MAPK signaling facilitates axonal degeneration. We show that MAPK signaling promotes the turnover of the axonal survival factor NMNAT2 in cultured mammalian neurons as well as the Drosophila ortholog dNMNAT in motoneurons. The increased levels of NMNAT2 are required for the axonal protection caused by loss of MAPK signaling. Regulation of NMNAT2 by MAPK signaling does not require SARM1, and so cannot be downstream of SARM1. Hence, pro-degenerative MAPK signaling functions upstream of SARM1 by limiting the levels of the essential axonal survival factor NMNAT2 to promote injury-dependent SARM1 activation. These findings are consistent with a linear molecular pathway for the axonal degeneration program.>DOI:
机译:损伤诱导的(Wallerian)轴突变性是通过诸如SARM1和MAPK信号等促变性因子和促存活因子的相反作用来调节的,其中最重要的是NAD + 生物合成酶抑制SARM1途径激活的NMNAT2。在这里,我们研究了MAPK信号传导促进轴突变性的机制。我们表明,MAPK信号能够促进轴突生存因子NMNAT2在运动的哺乳动物神经元以及果蝇直系同源dNMNAT在运动神经元中的更新。 NMNAT2水平的增加是由MAPK信号丢失引起的轴突保护所必需的。 MAPK信号对NMNAT2的调节不需要SARM1,因此不能在SARM1的下游。因此,前变性MAPK信号传导通过限制必需的轴突存活因子NMNAT2的水平来促进损伤依赖性SARM1活化,从而在SARM1上游起作用。这些发现与轴突变性程序的线性分子途径一致。> DOI:

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