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GTP酶dMiro是线粒体轴突运输至果蝇突触所必需的。

The GTPase dMiro is required for axonal transport of mitochondria to Drosophila synapses.

作者信息

Guo Xiufang, Macleod Greg T, Wellington Andrea, Hu Fangle, Panchumarthi Sarvari, Schoenfield Miriam, Marin Leo, Charlton Milton P, Atwood Harold L, Zinsmaier Konrad E

机构信息

Arizona Research Laboratories, Division of Neurobiology, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Neuron. 2005 Aug 4;47(3):379-93. doi: 10.1016/j.neuron.2005.06.027.

Abstract

We have identified EMS-induced mutations in Drosophila Miro (dMiro), an atypical mitochondrial GTPase that is orthologous to human Miro (hMiro). Mutant dmiro animals exhibit defects in locomotion and die prematurely. Mitochondria in dmiro mutant muscles and neurons are abnormally distributed. Instead of being transported into axons and dendrites, mitochondria accumulate in parallel rows in neuronal somata. Mutant neuromuscular junctions (NMJs) lack presynaptic mitochondria, but neurotransmitter release and acute Ca2+ buffering is only impaired during prolonged stimulation. Neuronal, but not muscular, expression of dMiro in dmiro mutants restored viability, transport of mitochondria to NMJs, the structure of synaptic boutons, the organization of presynaptic microtubules, and the size of postsynaptic muscles. In addition, gain of dMiro function causes an abnormal accumulation of mitochondria in distal synaptic boutons of NMJs. Together, our findings suggest that dMiro is required for controlling anterograde transport of mitochondria and their proper distribution within nerve terminals.

摘要

我们已经在果蝇Miro(dMiro)中鉴定出了由EMS诱导的突变,dMiro是一种非典型的线粒体GTP酶,与人Miro(hMiro)直系同源。dmiro突变体动物表现出运动缺陷并过早死亡。dmiro突变体肌肉和神经元中的线粒体分布异常。线粒体不是被运输到轴突和树突中,而是在神经元胞体中平行排列堆积。突变的神经肌肉接头(NMJ)缺乏突触前线粒体,但仅在长时间刺激期间神经递质释放和急性Ca2+缓冲才受损。在dmiro突变体中,神经元而非肌肉中dMiro的表达恢复了活力、线粒体向NMJ的运输、突触小体的结构、突触前微管的组织以及突触后肌肉的大小。此外,dMiro功能的增强会导致线粒体在NMJ远端突触小体中异常堆积。总之,我们的研究结果表明,dMiro是控制线粒体顺向运输及其在神经末梢内正确分布所必需的。

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