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色素上皮衍生因子受体(PEDF-R/Pnpla2)缺失导致光感受器变性。

Ablation of pigment epithelium-derived factor receptor (PEDF-R/Pnpla2) causes photoreceptor degeneration.

机构信息

Section of Protein Structure and Function, Laboratory of Retinal Cell and Molecular Biology, National Eye Institute, National Institutes of Health, Bethesda, MD, USA.

Genetic Engineering Core, National Eye Institute, National Institutes of Health, Bethesda, MD, USA.

出版信息

J Lipid Res. 2023 May;64(5):100358. doi: 10.1016/j.jlr.2023.100358. Epub 2023 Mar 17.

Abstract

Photoreceptor cells express the patatin-like phospholipase domain-containing 2 (PNPLA2) gene that codes for pigment epithelium-derived factor receptor (PEDF-R) (also known as ATGL). PEDF-R exhibits phospholipase activity that mediates the neurotrophic action of its ligand PEDF. Because phospholipids are the most abundant lipid class in the retina, we investigated the role of PEDF-R in photoreceptors by generating CRISPR Pnpla2 knock-out mouse lines in a retinal degeneration-free background. Pnpla2 mice had undetectable retinal Pnpla2 gene expression and PEDF-R protein levels as assayed by RT-PCR and immunofluorescence, respectively. The photoreceptors of mice deficient in PEDF-R had deformities as examined by histology and transmission electron microscopy. Pnpla2 knockdown diminished the PLA enzymatic activity of PEDF-R in the retina. Lipidomic analyses revealed the accumulation of lysophosphatidyl choline-DHA and lysophosphatidyl ethanolamine-DHA in PEDF-R-deficient retinas, suggesting a possible causal link to photoreceptor dysfunction. Loss of PEDF-R decreased levels of rhodopsin, opsin, PKCα, and synaptophysin relative to controls. Pnpla2 photoreceptors had surface-exposed phosphatidylserine, and their nuclei were TUNEL positive and condensed, revealing an apoptotic onset. Paralleling its structural defects, PEDF-R deficiency compromised photoreceptor function in vivo as indicated by the attenuation of photoreceptor a- and b-waves in Pnpla2 and Pnpla2 mice relative to controls as determined by electroretinography. In conclusion, ablation of PEDF-R in mice caused alteration in phospholipid composition associated with malformation and malperformance of photoreceptors. These findings identify PEDF-R as an important component for photoreceptor structure and function, highlighting its role in phospholipid metabolism for retinal survival and its consequences.

摘要

光感受器细胞表达 patatin 样磷脂酶结构域包含蛋白 2(PNPLA2)基因,该基因编码色素上皮衍生因子受体(PEDF-R)(也称为 ATGL)。PEDF-R 表现出磷脂酶活性,介导其配体 PEDF 的神经营养作用。由于磷脂是视网膜中最丰富的脂质类,我们通过在无视网膜变性的背景下生成 CRISPR Pnpla2 敲除鼠系,研究了 PEDF-R 在光感受器中的作用。Pnpla2 敲除鼠的视网膜中无法检测到 Pnpla2 基因表达和 PEDF-R 蛋白水平,分别通过 RT-PCR 和免疫荧光法检测。组织学和透射电子显微镜检查显示,PEDF-R 缺失的光感受器有畸形。Pnpla2 敲低降低了视网膜中 PEDF-R 的 PLA 酶活性。脂质组学分析显示,PEDF-R 缺陷的视网膜中积累了溶血磷脂酰胆碱-DHA 和溶血磷脂酰乙醇胺-DHA,表明这可能与光感受器功能障碍有因果关系。PEDF-R 的缺失降低了相对于对照的视紫红质、视蛋白、PKCα 和突触小体蛋白的水平。Pnpla2 光感受器有表面暴露的磷脂酰丝氨酸,其核 TUNEL 阳性且浓缩,表明发生了凋亡起始。与其结构缺陷平行,PEDF-R 缺失损害了 Pnpla2 和 Pnpla2 敲除鼠体内的光感受器功能,如通过视网膜电图确定的相对于对照的光感受器 a-和 b-波衰减所表明的那样。总之,在小鼠中敲除 PEDF-R 导致与光感受器畸形和功能障碍相关的磷脂组成改变。这些发现确定了 PEDF-R 是光感受器结构和功能的重要组成部分,强调了其在视网膜存活的磷脂代谢中的作用及其后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/deb6/10233210/1cf85e6fe17c/gr1.jpg

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