Sastra University, Tirumalaisamudram, Tamil Nadu, 613401, India.
NCBS-TIFR, Bangalore, Karnataka, 560065, India.
Sci Rep. 2018 Jun 12;8(1):8938. doi: 10.1038/s41598-018-27211-9.
We investigate the role of axonal transport in regulating neuronal mitochondrial density. We show that the density of mitochondria in the touch receptor neuron (TRN) of adult Caenorhabditis elegans is constant. Mitochondrial density and transport are controlled both by the Kinesin heavy chain and the Dynein-Dynactin complex. However, unlike in other models, the presence of mitochondria in C. elegans TRNs depends on a Kinesin light chain as well. Mutants in the three C. elegans miro genes do not alter mitochondrial density in the TRNs. Mutants in the Kinesin-1 associated proteins, UNC-16/JIP3 and UNC-76/FEZ1, show increased mitochondrial density and also have elevated levels of both the Kinesin Heavy and Light Chains in neurons. Genetic analyses suggest that, the increased mitochondrial density at the distal end of the neuronal process in unc-16 and unc-76 depends partly on Dynein. We observe a net anterograde bias in the ratio of anterograde to retrograde mitochondrial flux in the neuronal processes of unc-16 and unc-76, likely due to both increased Kinesin-1 and decreased Dynein in the neuronal processes. Our study shows that UNC-16 and UNC-76 indirectly limit mitochondrial density in the neuronal process by maintaining a balance in anterograde and retrograde mitochondrial axonal transport.
我们研究了轴突运输在调节神经元线粒体密度中的作用。我们发现成年秀丽隐杆线虫(Caenorhabditis elegans)触须感觉神经元(TRN)中的线粒体密度是恒定的。线粒体密度和运输既受驱动蛋白重链(Kinesin heavy chain)又受动力蛋白-动力素复合物(Dynein-Dynactin complex)的控制。然而,与其他模型不同的是,线虫 TRN 中的线粒体存在也依赖于驱动蛋白轻链(Kinesin light chain)。秀丽隐杆线虫的三个 miro 基因的突变体不会改变 TRN 中的线粒体密度。UNC-16/JIP3 和 UNC-76/FEZ1 这两种与 Kinesin-1 相关的蛋白的突变体显示线粒体密度增加,神经元中的驱动蛋白重链和轻链水平也升高。遗传分析表明,unc-16 和 unc-76 神经元过程中远端线粒体密度的增加部分依赖于动力蛋白。我们观察到 unc-16 和 unc-76 神经元过程中正向和逆向线粒体通量的比例呈净正向偏倚,这可能是由于神经元过程中驱动蛋白-1 的增加和动力蛋白的减少。我们的研究表明,UNC-16 和 UNC-76 通过维持正向和逆向线粒体轴突运输的平衡,间接地限制了神经元过程中的线粒体密度。