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锌和铜对海马神经元树突和棘中微管蛋白和肌动蛋白网络稳定性的影响

Zinc and Copper Effects on Stability of Tubulin and Actin Networks in Dendrites and Spines of Hippocampal Neurons.

作者信息

Perrin Laura, Roudeau Stéphane, Carmona Asuncion, Domart Florelle, Petersen Jennifer D, Bohic Sylvain, Yang Yang, Cloetens Peter, Ortega Richard

机构信息

University of Bordeaux, CENBG, UMR 5797, F-33170 Gradignan, France.

CNRS, IN2P3, CENBG, UMR 5797, F-33170 Gradignan, France.

出版信息

ACS Chem Neurosci. 2017 Jul 19;8(7):1490-1499. doi: 10.1021/acschemneuro.6b00452. Epub 2017 Apr 3.

Abstract

Zinc and copper ions can modulate the activity of glutamate receptors. However, labile zinc and copper ions likely represent only the tip of the iceberg and other neuronal functions are suspected for these metals in their bound state. We performed synchrotron X-ray fluorescence imaging with 30 nm resolution to image total biometals in dendrites and spines from hippocampal neurons. We found that zinc is distributed all along the dendrites while copper is mainly pinpointed within the spines. In spines, zinc content is higher within the spine head while copper is higher within the spine neck. Such specific distributions suggested metal interactions with cytoskeleton proteins. Zinc supplementation induced the increase of β-tubulin content in dendrites. Copper supplementation impaired the β-tubulin and F-actin networks. Copper chelation resulted in the decrease of F-actin content in dendrites, drastically reducing the number of F-actin protrusions. These results indicate that zinc is involved in microtubule stability whereas copper is essential for actin-dependent stability of dendritic spines, although copper excess can impair the dendritic cytoskeleton.

摘要

锌离子和铜离子可以调节谷氨酸受体的活性。然而,不稳定的锌离子和铜离子可能只是冰山一角,人们怀疑这些金属的结合态还具有其他神经元功能。我们进行了分辨率为30纳米的同步加速器X射线荧光成像,以对海马神经元树突和棘中的总生物金属进行成像。我们发现锌沿树突全程分布,而铜主要集中在棘内。在棘中,锌含量在棘头中较高,而铜在棘颈中较高。这种特定分布表明金属与细胞骨架蛋白存在相互作用。补充锌会导致树突中β-微管蛋白含量增加。补充铜会损害β-微管蛋白和F-肌动蛋白网络。铜螯合导致树突中F-肌动蛋白含量减少,大幅减少F-肌动蛋白突起的数量。这些结果表明,锌参与微管稳定性,而铜对于树突棘的肌动蛋白依赖性稳定性至关重要,尽管铜过量会损害树突细胞骨架。

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