AIBP Protects Müller Glial Cells Against Oxidative Stress-Induced Mitochondrial Dysfunction and Reduces Retinal Neuroinflammation.

IF 6 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Seunghwan Choi, Soo-Ho Choi, Tonking Bastola, Keun-Young Kim, Sungsik Park, Robert N Weinreb, Yury I Miller, Won-Kyu Ju
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引用次数: 0

Abstract

Glaucoma, an optic neuropathy with the loss of retinal ganglion cells (RGCs), is a leading cause of irreversible vision loss. Oxidative stress and mitochondrial dysfunction have a significant role in triggering glia-driven neuroinflammation and subsequent glaucomatous RGC degeneration in the context of glaucoma. It has previously been shown that apolipoprotein A-I binding protein (APOA1BP or AIBP) has an anti-inflammatory function. Moreover, Apoa1bp-/- mice are characterized by retinal neuroinflammation and RGC loss. In this study, we found that AIBP deficiency exacerbated the oxidative stress-induced disruption of mitochondrial dynamics and function in the retina, leading to a further decline in visual function. Mechanistically, AIBP deficiency-induced oxidative stress triggered a reduction in glycogen synthase kinase 3β and dynamin-related protein 1 phosphorylation, optic atrophy type 1 and mitofusin 1 and 2 expression, and oxidative phosphorylation, as well as the activation of mitogen-activated protein kinase (MAPK) in Müller glia dysfunction, leading to cell death and inflammatory responses. In vivo, the administration of recombinant AIBP (rAIBP) effectively protected the structural and functional integrity of retinal mitochondria under oxidative stress conditions and prevented vision loss. In vitro, incubation with rAIBP safeguarded the structural integrity and bioenergetic performance of mitochondria and concurrently suppressed MAPK activation, apoptotic cell death, and inflammatory response in Müller glia. These findings support the possibility that AIBP promotes RGC survival and restores visual function in glaucomatous mice by ameliorating glia-driven mitochondrial dysfunction and neuroinflammation.

AIBP 可保护缪勒神经胶质细胞免受氧化应激诱导的线粒体功能障碍的影响,并减轻视网膜神经炎症。
青光眼是一种视网膜神经节细胞(RGC)丧失的视神经病变,是造成不可逆视力丧失的主要原因。氧化应激和线粒体功能障碍在引发神经胶质细胞驱动的神经炎症和随后的青光眼 RGC 退化中起着重要作用。此前已有研究表明,载脂蛋白 A-I 结合蛋白(APOA1BP 或 AIBP)具有抗炎功能。此外,Apoa1bp-/-小鼠具有视网膜神经炎症和 RGC 丢失的特征。在这项研究中,我们发现 AIBP 缺乏会加剧氧化应激引起的视网膜线粒体动力学和功能的破坏,从而导致视功能进一步下降。从机理上讲,AIBP 缺乏诱导的氧化应激引发了糖原合酶激酶 3β 和动态相关蛋白 1 磷酸化、视神经萎缩 1 型和丝裂蛋白 1 和 2 表达、氧化磷酸化的减少,以及 Müller 胶质功能障碍中丝裂原活化蛋白激酶(MAPK)的激活,从而导致细胞死亡和炎症反应。在体内,服用重组 AIBP(rAIBP)可有效保护氧化应激条件下视网膜线粒体结构和功能的完整性,防止视力丧失。在体外,用 rAIBP 培养可保护线粒体的结构完整性和生物能,同时抑制 MAPK 激活、细胞凋亡和 Müller 胶质的炎症反应。这些发现支持了AIBP通过改善胶质细胞驱动的线粒体功能障碍和神经炎症来促进RGC存活和恢复青光眼小鼠视觉功能的可能性。
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来源期刊
Antioxidants
Antioxidants Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
10.60
自引率
11.40%
发文量
2123
审稿时长
16.3 days
期刊介绍: Antioxidants (ISSN 2076-3921), provides an advanced forum for studies related to the science and technology of antioxidants. It publishes research papers, reviews and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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