脑线粒体与由脑微管蛋白和MAP2或TAU重建的微管的相互作用。

D Jung, D Filliol, M Miehe, A Rendon
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引用次数: 52

摘要

为了探索微管相关蛋白MAP2和TAU在线粒体与微管相互作用中的行为,我们用从大鼠脑中分离的细胞器重建了一个同源的脱细胞系统。我们建立了一种基于125i标记微管与线粒体共沉淀的体外定量结合实验。我们发现微管与线粒体的结合是浓度依赖性和可饱和的。结合对ATP不敏感。由不含TAU或MAP2的微管蛋白和包被TAU或MAP2的微管蛋白制备的紫杉醇稳定微管的比较表明,微管相关蛋白减少或降低到背景水平,与线粒体形成复合物。相反,当线粒体被MAP2或TAU包被时,与线粒体共沉积的无MAP2紫杉醇微管的数量增加了2倍和6倍。这些研究表明,这两种主要的脑map可能具有交联或间隔作用,这取决于它们的细胞器定位。
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Interaction of brain mitochondria with microtubules reconstituted from brain tubulin and MAP2 or TAU.

To explore the behaviour of microtubule-associated proteins, MAP2 and TAU in the interactions of mitochondria with microtubules, an homologous acellular system has been reconstituted with organelles isolated from rat brain. We have established a quantitative in vitro binding assay based on the cosedimentation of 125I-labeled microtubules with mitochondria. We found that binding of microtubules to mitochondria was concentration dependent and saturable. Binding was insensitive to ATP. A comparison of taxol-stabilized microtubules prepared from MAP-free tubulin or tubulin coated with TAU or MAP2 showed that the microtubule-associated proteins diminished, or reduced to background levels, the formation of complexes with mitochondria. In contrast, the amount of MAP-free taxol microtubules that cosedimented with mitochondria increased two- and six-fold when mitochondria were coated with MAP2 or TAU. These studies suggest that the two major brain MAPs could have a crosslinking or a spacing role, depending on their organelle localization.

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