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视网膜从头脂肪生成协调神经营养信号以维持视力。

Retinal de novo lipogenesis coordinates neurotrophic signaling to maintain vision.

机构信息

Department of Ophthalmology and Visual Sciences.

Division of Endocrinology, Metabolism, and Lipid Research.

出版信息

JCI Insight. 2018 Jan 11;3(1). doi: 10.1172/jci.insight.97076.

Abstract

Membrane lipid composition is central to the highly specialized functions of neurological tissues. In the retina, abnormal lipid metabolism causes severe forms of blindness, often through poorly understood neuronal cell death. Here, we demonstrate that deleting the de novo lipogenic enzyme fatty acid synthase (FAS) from the neural retina, but not the vascular retina, results in progressive neurodegeneration and blindness with a temporal pattern resembling rodent models of retinitis pigmentosa. Blindness was not rescued by protection from light-evoked activity; by eating a diet enriched in palmitate, the product of the FAS reaction; or by treatment with the PPARα agonist fenofibrate. Vision loss was due to aberrant synaptic structure, blunted responsiveness to glial-derived neurotrophic factor and ciliary neurotrophic factor, and eventual apoptotic cell loss. This progressive neurodegeneration was associated with decreased membrane cholesterol content, as well as loss of discrete n-3 polyunsaturated fatty acid- and saturated fatty acid-containing phospholipid species within specialized membrane microdomains. Neurotrophic signaling was restored by exogenous cholesterol delivery. These findings implicate de novo lipogenesis in neurotrophin-dependent cell survival by maintaining retinal membrane configuration and lipid composition, and they suggest that ongoing lipogenesis may be required to prevent cell death in many forms of retinopathy.

摘要

膜脂质组成是神经组织高度特化功能的核心。在视网膜中,异常的脂质代谢会导致严重的失明,通常是通过尚不清楚的神经元细胞死亡引起的。在这里,我们证明从神经视网膜而非血管视网膜中删除从头合成脂肪酶脂肪酸合酶(FAS)会导致进行性神经退行性变和失明,其时间模式类似于视网膜色素变性的啮齿动物模型。通过防止光引发的活动、食用富含 FAS 反应产物棕榈酸的饮食、或用 PPARα 激动剂非诺贝特治疗,都不能挽救失明。视力丧失是由于突触结构异常、对神经胶质衍生神经营养因子和睫状神经营养因子的反应迟钝以及最终的细胞凋亡所致。这种进行性神经退行性变与膜胆固醇含量降低以及特殊膜微区中离散的 n-3 多不饱和脂肪酸和含饱和脂肪酸的磷脂种类的丧失有关。通过外源性胆固醇递送可恢复神经营养信号。这些发现表明,从头合成脂肪生成通过维持视网膜膜结构和脂质组成参与神经营养因子依赖性细胞存活,并且它们表明,在许多形式的视网膜病变中,可能需要持续的脂肪生成来防止细胞死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7894/5821215/10b627cf77fd/jciinsight-3-97076-g001.jpg

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