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Terminal axon branching is regulated by the LKB1-NUAK1 kinase pathway via presynaptic mitochondrial capture

机译:末端轴突分支受LKB1-NUAK1激酶途径通过突触前线粒体捕获的调控

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Summary The molecular mechanisms underlying the axon arborization of mammalian neurons are poorly understood but are critical for the establishment of functional neural circuits. We identified a pathway defined by two kinases, LKB1 and NUAK1, required for cortical axon branching in vivo. Conditional deletion of LKB1 after axon specification or knockdown of NUAK1 drastically reduced axon branching in vivo, whereas their overexpression was sufficient to increase axon branching. The LKB1-NUAK1 pathway controls mitochondria immobilization in axons. Using manipulation of Syntaphilin, a protein necessary and sufficient to arrest mitochondrial transport specifically in the axon, we demonstrate that the LKB1-NUAK1 kinase pathway regulates axon branching by promoting mitochondria immobilization. Finally, we show that LKB1 and NUAK1 are necessary and sufficient to immobilize mitochondria specifically at nascent presynaptic sites. Our results unravel a link between presynaptic mitochondrial capture and axon branching. PaperClip
机译:小结哺乳动物神经元轴突树突化的分子机制了解甚少,但对于建立功能性神经回路至关重要。我们确定了由两个激酶,LKB1和NUAK1,在体内的皮层轴突分支所需的途径定义。轴突规范后有条件的LKB1删除或NUAK1的敲低大大减少了体内的轴突分支,而它们的过表达足以增加轴突分支。 LKB1-NUAK1途径控制轴突中线粒体的固定。使用Syntaphilin操纵蛋白,一种蛋白质,它足以阻止特定于轴突的线粒体运输,我们证明LKB1-NUAK1激酶途径可通过促进线粒体固定来调节轴突分支。最后,我们表明LKB1和NUAK1是必要的,并且足以将线粒体固定在新生的突触前位点。我们的结果揭示了突触前线粒体捕获与轴突分支之间的联系。回形针

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