脂钙素-2介导的铁下垂作为光诱导的光感受器变性的保护靶点。

IF 6 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Wenyi Tang, Ruyi Zhai, Jun Ma, Gezhi Xu
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引用次数: 0

摘要

背景:视网膜变性是全世界失明的主要原因。铁下垂的诱导已被确定为视网膜变性中光感受器丧失的重要机制。脂载素-2 (LCN2)具有铁调节特性,可能调节多种疾病中的细胞活力。然而,LCN2对视网膜变性中铁下垂的影响尚不清楚。方法:建立661W感光细胞光致损伤模型和光致视网膜变性雄性大鼠模型。western blotting检测LCN2蛋白表达。利用重组LCN2蛋白(rLCN2)和靶向LCN2的小干扰RNA (siRNA),研究LCN2对体外铁凋亡的影响。测定铁离子(Fe2+)、丙二醛(MDA)、三肽谷胱甘肽(GSH)水平及凋亡相关蛋白(溶质载体家族7成员11 [SLC7A11]和谷胱甘肽过氧化物酶-4 [GPX4])的表达。采用磷酸激酶阵列和western blotting来阐明lcn2调节的光感受器铁下垂的机制。此外,通过苏木精染色、伊红染色和视网膜电图分析,利用表达短发夹RNA (short hairpin RNA, shRNA)的腺相关病毒(AAV)靶向LCN2 (AAV-shRNA-LCN2)敲低LCN2对视网膜结构和功能的保护作用。结果:光照后LCN2表达显著上调。rLCN2显著诱导光感受器细胞铁凋亡,表现为细胞活力降低、Fe2+水平升高、SLC7A11和GPX4表达抑制、GSH消耗和MDA水平升高,而siLCN2对这些作用有保护作用。光感受器细胞暴露于rLCN2激活的c-Jun n -末端激酶(JNK), JNK抑制剂SP600125可以保护光感受器细胞免于铁下垂。最后,AAV-shRNA-LCN2在体内抑制光致视网膜铁下垂,保护视网膜结构和功能。结论:LCN2是光感受器光致铁下垂的关键调控因子,通过调控JNK通路。因此,LCN2为视网膜变性的治疗提供了新的靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lipocalin-2-mediated ferroptosis as a target for protection against light-induced photoreceptor degeneration.

Background: Retinal degeneration is a leading cause of blindness worldwide. The induction of ferroptosis has been identified as an important mechanism contributing to the loss of photoreceptors in retinal degeneration. Lipocalin-2 (LCN2) exhibits iron-regulatory properties and may modulate cell viability in various diseases. However, the effects of LCN2 on ferroptosis in retinal degeneration remain unclear.

Methods: A light-induced injury model using 661W photoreceptor cells and a light-induced retinal degeneration male rat model were established. LCN2 protein expression was assessed by western blotting. The effects of LCN2 on ferroptosis in vitro were investigated by using recombinant LCN2 protein (rLCN2) and small-interfering RNA (siRNA) targeting LCN2 (siLCN2). Fe2+, malondialdehyde (MDA), tripeptide glutathione (GSH) levels, and the expression of ferroptosis-associated proteins (solute carrier family 7 member 11 [SLC7A11] and glutathione peroxidase-4 [GPX4]) were measured. A phosphokinase array and western blotting were performed to elucidate the mechanisms underlying LCN2-modulated photoreceptor ferroptosis. Additionally, the protective effects of LCN2 knockdown using adeno-associated virus (AAV)-expressing short hairpin RNA (shRNA) targeting LCN2 (AAV-shRNA-LCN2) on retinal structure and function in vivo were evaluated by hematoxylin and eosin staining and electroretinography.

Results: LCN2 expression was significantly upregulated following light exposure. Treatment with rLCN2 significantly induced ferroptosis in photoreceptor cells, as shown by decreased cell viability, increased Fe2+ levels, inhibition of SLC7A11 and GPX4 expression, depletion of GSH, and enhanced MDA levels, whereas siLCN2 protected against these effects. Exposure of photoreceptor cells to rLCN2 activated c-Jun N-terminal kinase (JNK), and administration of the JNK inhibitor SP600125 protected photoreceptor cells from ferroptosis. Lastly, AAV-shRNA-LCN2 administration inhibited light-induced ferroptosis in the retina, and protected the retinal structure and function in vivo.

Conclusion: LCN2 is a key regulator of light-induced ferroptosis in photoreceptors by modulating the JNK pathway. Therefore, LCN2 presents a new target for the treatment of retinal degeneration.

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来源期刊
Molecular Medicine
Molecular Medicine 医学-生化与分子生物学
CiteScore
8.60
自引率
0.00%
发文量
137
审稿时长
1 months
期刊介绍: Molecular Medicine is an open access journal that focuses on publishing recent findings related to disease pathogenesis at the molecular or physiological level. These insights can potentially contribute to the development of specific tools for disease diagnosis, treatment, or prevention. The journal considers manuscripts that present material pertinent to the genetic, molecular, or cellular underpinnings of critical physiological or disease processes. Submissions to Molecular Medicine are expected to elucidate the broader implications of the research findings for human disease and medicine in a manner that is accessible to a wide audience.
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