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活性氧通过将外泌体 NADPH 氧化酶 2 复合物释放到损伤的轴突中,来调节轴突再生。

Reactive oxygen species regulate axonal regeneration through the release of exosomal NADPH oxidase 2 complexes into injured axons.

机构信息

Molecular Neuroregeneration, Division of Brain Sciences, Department of Medicine, Imperial College London, London, UK.

Cellular and Molecular Neurobiotechnology, Institute for Bioengineering of Catalonia, Barcelona, Spain.

出版信息

Nat Cell Biol. 2018 Mar;20(3):307-319. doi: 10.1038/s41556-018-0039-x. Epub 2018 Feb 12.

Abstract

Reactive oxygen species (ROS) contribute to tissue damage and remodelling mediated by the inflammatory response after injury. Here we show that ROS, which promote axonal dieback and degeneration after injury, are also required for axonal regeneration and functional recovery after spinal injury. We find that ROS production in the injured sciatic nerve and dorsal root ganglia requires CX3CR1-dependent recruitment of inflammatory cells. Next, exosomes containing functional NADPH oxidase 2 complexes are released from macrophages and incorporated into injured axons via endocytosis. Once in axonal endosomes, active NOX2 is retrogradely transported to the cell body through an importin-β1-dynein-dependent mechanism. Endosomal NOX2 oxidizes PTEN, which leads to its inactivation, thus stimulating PI3K-phosporylated (p-)Akt signalling and regenerative outgrowth. Challenging the view that ROS are exclusively involved in nerve degeneration, we propose a previously unrecognized role of ROS in mammalian axonal regeneration through a NOX2-PI3K-p-Akt signalling pathway.

摘要

活性氧 (ROS) 在损伤后的炎症反应中导致组织损伤和重塑。在这里,我们表明 ROS 促进损伤后轴突退变和退化,也需要轴突再生和脊髓损伤后的功能恢复。我们发现,损伤的坐骨神经和背根神经节中的 ROS 产生需要依赖于 CX3CR1 的募集炎症细胞。接下来,含有功能性 NADPH 氧化酶 2 复合物的外泌体从巨噬细胞中释放出来,并通过内吞作用被纳入受损的轴突。一旦进入轴突内体,活性 NOX2 通过导入蛋白-β1-动力蛋白依赖的机制被逆行运输到细胞体。内体中的 NOX2 氧化 PTEN,使其失活,从而刺激 PI3K 磷酸化 (p-)Akt 信号转导和再生性生长。挑战 ROS 仅参与神经退化的观点,我们提出了一个以前未被认识到的 ROS 通过 NOX2-PI3K-p-Akt 信号通路在哺乳动物轴突再生中的作用。

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