首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >The micro-architecture of mitochondria at active zones: electron tomography reveals novel anchoring scaffolds and cristae structured for high-rate metabolism.
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The micro-architecture of mitochondria at active zones: electron tomography reveals novel anchoring scaffolds and cristae structured for high-rate metabolism.

机译:主动区的线粒体微观结构:电子断层扫描揭示了用于高速率代谢的新型锚固支架和嵴。

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Mitochondria are integral elements of many nerve terminals. They must be appropriately positioned to regulate microdomains of Ca(2+) concentration and metabolic demand, but structures that anchor them in place have not been described. By applying the high resolution of electron tomography (ET) to the study of a central terminal, the calyx of Held, we revealed an elaborate cytoskeletal superstructure that connected a subset of mitochondria to the presynaptic membrane near active zones. This cytoskeletal network extended laterally and was well integrated into the nerve terminal cytoskeleton, which included filamentous linkages among synaptic vesicles. ET revealed novel features of inner membrane for these mitochondria. Crista structure was polarized in that crista junctions, circular openings of the inner membrane under the outer membrane, were aligned with the cytoskeletal superstructure and occurred at higher density in mitochondrial membrane facing the presynaptic membrane. These characteristics represent the first instance where a subcomponent of an organelle is shown to have a specific orientation relative to the polarized structure of a cell. The ratio of cristae to outer membrane surface area is large in these mitochondria relative to other tissues, indicating a high metabolic capacity. These observations suggest general principles for cytoskeletal anchoring of mitochondria in all tissues, reveal potential routes for nonsynaptic communication between presynaptic and postsynaptic partners using this novel cytoskeletal framework, and indicate that crista structure can be specialized for particular functions within cellular microdomains.
机译:线粒体是许多神经终端的组成部分。必须适当地定位以调节Ca(2+)浓度和代谢需求的微质,但是尚未描述锚定它们的结构。通过将电子断层扫描(ET)的高分辨率应用于中央终端,持有的Calyx,我们揭示了一种精心细胞骨架上层建筑,其将线粒体的子集连接到有源区附近的突触前膜。这种细胞骨骼网络横向延伸并良好地集成到神经末端细胞骨架中,包括突触囊泡中的丝状键。 ET揭示了这些线粒体内膜的新颖特征。 Crista结构被偏振,即在外膜下的内膜下的内膜的圆形开口,与细胞骨架上部结构对齐,并且在面向突触前膜的线粒体膜中发生较高密度。这些特性代表第一实例,其中细胞器的子组分被示出相对于电池的偏振结构具有特定取向。这些线粒体相对于其他组织,嵴与外膜表面积的比例大,表明高代谢容量。这些观察结果提出了所有组织中线粒体的细胞骨骼锚定的一般原则,揭示了使用这种新细胞骨架框架的突触前和后腹膜伴侣之间的非互连通信的潜在路线,并表明Crista结构可以专门用于细胞微摩托内的特定功能。

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