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APC binds the Miro/Milton motor complex to stimulate transport of mitochondria to the plasma membrane

机译:APC与Miro / Milton运动复合物结合以刺激线粒体向质膜的转运

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摘要

Mutations in adenomatous polyposis coli (APC) disrupt regulation of Wnt signaling, mitosis, and the cytoskeleton. We describe a new role for APC in the transport of mitochondria. Silencing of wild-type APC by small interfering RNA caused mitochondria to redistribute from the cell periphery to the perinuclear region. We identified novel APC interactions with the mitochondrial kinesin-motor complex Miro/Milton that were mediated by the APC C-terminus. Truncating mutations in APC abolished its ability to bind Miro/Milton and reduced formation of the Miro/Milton complex, correlating with disrupted mitochondrial distribution in colorectal cancer cells that could be recovered by reconstitution of wild-type APC. Using proximity ligation assays, we identified endogenous APC-Miro/Milton complexes at mitochondria, and live-cell imaging showed that loss of APC slowed the frequency of anterograde mitochondrial transport to the membrane. We propose that APC helps drive mitochondria to the membrane to supply energy for cellular processes such as directed cell migration, a process disrupted by cancer mutations.
机译:腺瘤性息肉病大肠杆菌(APC)中的突变破坏了Wnt信号,有丝分裂和细胞骨架的调控。我们描述了APC在线粒体运输中的新作用。小干扰RNA沉默野生型APC导致线粒体从细胞周围重新分布到核周区域。我们确定了由APC C末端介导的线粒体驱动蛋白-运动复合体Miro / Milton的新型APC相互作用。 APC中的截短突变消除了其与Miro / Milton结合的能力,并减少了Miro / Milton复合物的形成,这与大肠癌细胞中线粒体分布的破坏有关,可以通过重组野生型APC来恢复它。使用邻近结扎分析,我们在线粒体中鉴定了内源性APC-Miro / Milton复合物,活细胞成像显示APC的丢失减慢了顺行线粒体向膜转运的频率。我们提出,APC有助于驱动线粒体到达膜,从而为细胞过程(例如定向细胞迁移)提供能量,该过程被癌症突变破坏。

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