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通过高内涵筛选鉴定12/15-脂氧合酶为轴突退变的调节因子。

Identification of 12/15-lipoxygenase as a regulator of axon degeneration through high-content screening.

作者信息

Rudhard York, Sengupta Ghosh Arundhati, Lippert Beatrix, Böcker Alexander, Pedaran Mehdi, Krämer Joachim, Ngu Hai, Foreman Oded, Liu Yichin, Lewcock Joseph W

机构信息

In Vitro Pharmacology, Evotec AG, Manfred Eigen Campus, 22419 Hamburg, Germany,

Departments of Neuroscience.

出版信息

J Neurosci. 2015 Feb 18;35(7):2927-41. doi: 10.1523/JNEUROSCI.2936-14.2015.

Abstract

Axon degeneration is a programed process that takes place during development, in response to neuronal injury, and as a component of neurodegenerative disease pathology, yet the molecular mechanisms that drive this process remain poorly defined. In this study, we have developed a semi-automated, 384-well format axon degeneration assay in rat dorsal root ganglion (DRG) neurons using a trophic factor withdrawal paradigm. Using this setup, we have screened a library of known drugs and bioactives to identify several previously unappreciated regulators of axon degeneration, including lipoxygenases. Multiple structurally distinct lipoxygenase inhibitors as well as mouse DRG neurons lacking expression of 12/15-lipoxygenase display protection of axons in this context. Retinal ganglion cell axons from 12/15-lipoxygenase-null mice were similarly protected from degeneration following nerve crush injury. Through additional mechanistic studies, we demonstrate that lipoxygenases act cell autonomously within neurons to regulate degeneration, and are required for mitochondrial permeabilization and caspase activation in the axon. These findings suggest that these enzymes may represent an attractive target for treatment of neuropathies and provide a potential mechanism for the neuroprotection observed in various settings following lipoxygenase inhibitor treatment.

摘要

轴突退变是一个程序性过程,发生在发育过程中、对神经元损伤的反应中以及作为神经退行性疾病病理学的一个组成部分,然而驱动这一过程的分子机制仍不清楚。在本研究中,我们利用营养因子撤除模式,在大鼠背根神经节(DRG)神经元中开发了一种半自动化的384孔板轴突退变检测方法。利用这种设置,我们筛选了一个已知药物和生物活性物质库,以鉴定几种以前未被认识的轴突退变调节因子,包括脂氧合酶。在这种情况下,多种结构不同的脂氧合酶抑制剂以及缺乏12/15-脂氧合酶表达的小鼠DRG神经元显示出对轴突的保护作用。来自12/15-脂氧合酶缺失小鼠的视网膜神经节细胞轴突在神经挤压损伤后同样受到保护而不发生退变。通过进一步的机制研究,我们证明脂氧合酶在神经元内自主发挥作用以调节退变,并且是轴突中线粒体通透性转换和半胱天冬酶激活所必需的。这些发现表明,这些酶可能是治疗神经病变的一个有吸引力的靶点,并为脂氧合酶抑制剂治疗后在各种情况下观察到的神经保护作用提供了一种潜在机制。

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