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精神分裂症相关联的 DISC1 蛋白通过与 p150 相互作用调节轴突中线粒体的运动。

Schizophrenia-associated dysbindin modulates axonal mitochondrial movement in cooperation with p150.

机构信息

Department of Life Sciences, Pohang University of Science and Technology, Pohang, Republic of Korea.

Weill Institute of Neurosciences, Department of Neurology, University of California, San Francisco, San Francisco, USA.

出版信息

Mol Brain. 2021 Jan 18;14(1):14. doi: 10.1186/s13041-020-00720-3.

Abstract

Mitochondrial movement in neurons is finely regulated to meet the local demand for energy and calcium buffering. Elaborate transport machinery including motor complexes is required to deliver and localize mitochondria to appropriate positions. Defects in mitochondrial transport are associated with various neurological disorders without a detailed mechanistic information. In this study, we present evidence that dystrobrevin-binding protein 1 (dysbindin), a schizophrenia-associated factor, plays a critical role in axonal mitochondrial movement. We observed that mitochondrial movement was impaired in dysbindin knockout mouse neurons. Reduced mitochondrial motility caused by dysbindin deficiency decreased the density of mitochondria in the distal part of axons. Moreover, the transport and distribution of mitochondria were regulated by the association between dysbindin and p150. Furthermore, altered mitochondrial distribution in axons led to disrupted calcium dynamics, showing abnormal calcium influx in presynaptic terminals. These data collectively suggest that dysbindin forms a functional complex with p150 that regulates axonal mitochondrial transport, thereby affecting presynaptic calcium homeostasis.

摘要

线粒体在神经元中的运动受到精细调节,以满足局部对能量和钙缓冲的需求。需要精细的运输机制,包括运动复合物,将线粒体运送到适当的位置并定位。线粒体运输缺陷与各种神经疾病有关,但缺乏详细的机制信息。在这项研究中,我们提供了证据表明,与精神分裂症相关的因子肌营养不良结合蛋白 1(dysbindin)在轴突线粒体运动中起着关键作用。我们观察到,dysbindin 敲除小鼠神经元中的线粒体运动受损。由于 dysbindin 缺乏导致的线粒体运动能力降低,减少了轴突远端的线粒体密度。此外,线粒体的运输和分布受 dysbindin 和 p150 之间的关联调节。此外,轴突中线粒体分布的改变导致钙动力学紊乱,表现为突触前末梢异常钙内流。这些数据共同表明,dysbindin 与 p150 形成功能性复合物,调节轴突线粒体运输,从而影响突触前钙稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d82/7814725/205af9681aab/13041_2020_720_Fig1_HTML.jpg

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