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钙结合蛋白 2 特异性缺失精氨酸酶 2 可在视神经挤压后保留视觉功能。

Calbindin 2-specific deletion of arginase 2 preserves visual function after optic nerve crush.

机构信息

Vascular Biology Center, Augusta University, Augusta, GA, 30912, USA.

Department of Medicine, Augusta University, Augusta, GA, 30912, USA.

出版信息

Cell Death Dis. 2023 Oct 10;14(10):661. doi: 10.1038/s41419-023-06180-6.

Abstract

We previously found that global deletion of the mitochondrial enzyme arginase 2 (A2) limits optic nerve crush (ONC)-induced neuronal death. Herein, we examined the cell-specific role of A2 in this pathology by studies using wild type (WT), neuronal-specific calbindin 2 A2 KO (Calb2 A2 ), myeloid-specific A2 KO (LysM A2), endothelial-specific A2 KO (Cdh5 A2), and floxed controls. We also examined the impact of A2 overexpression on mitochondrial function in retinal neuronal R28 cells. Immunolabeling showed increased A2 expression in ganglion cell layer (GCL) neurons of WT mice within 6 h-post injury and inner retinal neurons after 7 days. Calb2 A2 KO mice showed improved neuronal survival, decreased TUNEL-positive neurons, and improved retinal function compared to floxed littermates. Neuronal loss was unchanged by A2 deletion in myeloid or endothelial cells. We also found increased expression of neurotrophins (BDNF, FGF2) and improved survival signaling (pAKT, pERK1/2) in Calb2 A2 KO retinas within 24-hour post-ONC along with suppression of inflammatory mediators (IL1β, TNFα, IL6, and iNOS) and apoptotic markers (cleavage of caspase3 and PARP). ONC increased GFAP and Iba1 immunostaining in floxed controls, and Calb2 A2 KO dampened this effect. Overexpression of A2 in R28 cells increased Drp1 expression, and decreased mitochondrial respiration, whereas ABH-induced inhibition of A2 decreased Drp1 expression and improved mitochondrial respiration. Finally, A2 overexpression or excitotoxic treatment with glutamate significantly impaired mitochondrial function in R28 cells as shown by significant reductions in basal respiration, maximal respiration, and ATP production. Further, glutamate treatment of A2 overexpressing cells did not induce further deterioration in their mitochondrial function, indicating that A2 overexpression or glutamate insult induce comparable alterations in mitochondrial function. Our data indicate that neuronal A2 expression is neurotoxic after injury, and A2 deletion in Calb2 expressing neurons limits ONC-induced retinal neurodegeneration and improves visual function.

摘要

我们之前发现,线粒体酶精氨酸酶 2(A2)的全局缺失限制了视神经挤压(ONC)诱导的神经元死亡。在此,我们通过使用野生型(WT)、神经元特异性钙结合蛋白 2 A2 KO(Calb2 A2)、髓样特异性 A2 KO(LysM A2)、内皮特异性 A2 KO(Cdh5 A2)和 floxed 对照的研究,检查了 A2 在这种病理学中的细胞特异性作用。我们还研究了 A2 过表达对视网膜神经元 R28 细胞中线粒体功能的影响。免疫标记显示,WT 小鼠损伤后 6 小时内和 7 天后内节神经元的 A2 表达增加。与 floxed 同窝仔鼠相比,Calb2 A2 KO 小鼠表现出神经元存活改善、TUNEL 阳性神经元减少和视网膜功能改善。髓样细胞或内皮细胞中 A2 的缺失并未改变神经元丢失。我们还发现,在 Calb2 A2 KO 视网膜中,在 ONC 后 24 小时内,神经营养因子(BDNF、FGF2)的表达增加,存活信号(pAKT、pERK1/2)改善,同时抑制炎症介质(IL1β、TNFα、IL6 和 iNOS)和凋亡标志物(caspase3 和 PARP 的裂解)。ONC 增加了 floxed 对照中的 GFAP 和 Iba1 免疫染色,而 Calb2 A2 KO 则抑制了这种作用。A2 在 R28 细胞中的过表达增加了 Drp1 的表达,并降低了线粒体呼吸,而 ABH 诱导的 A2 抑制降低了 Drp1 的表达并改善了线粒体呼吸。最后,A2 过表达或谷氨酸的兴奋性处理显著降低了 R28 细胞中线粒体功能,表现为基础呼吸、最大呼吸和 ATP 产生的显著减少。此外,谷氨酸处理 A2 过表达细胞并没有进一步损害其线粒体功能,这表明 A2 过表达或谷氨酸损伤诱导了类似的线粒体功能改变。我们的数据表明,神经元 A2 表达在损伤后具有神经毒性,Calb2 表达神经元中的 A2 缺失限制了 ONC 诱导的视网膜神经退行性变并改善了视觉功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ff6/10564748/900046790f6c/41419_2023_6180_Fig1_HTML.jpg

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