敲除 LncRNA Lcn2-204 可通过调节铁过载和铁变态反应减轻败血症诱发的心肌损伤

IF 4.9 2区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Journal of molecular and cellular cardiology Pub Date : 2024-05-16 DOI:10.1016/j.yjmcc.2024.05.007
Yuhui Huang , Lu Li , Yuping Li , Na Lu , Hongqian Qin , Rui Wang , Wentao Li , Zhipeng Cheng , Zhenghong Li , Pinfang Kang , Hongwei Ye , Qin Gao
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引用次数: 0

摘要

铁变态反应是一种由脂质过氧化损伤导致的铁依赖性程序性细胞死亡形式,在各种原因引起的器官损伤和肿瘤发生中起着关键作用。败血症导致感染后严重的宿主反应,死亡率很高。长非编码 RNA(LncRNA)参与多种疾病的不同病理生理机制。本文利用盲肠结扎术(CLP)模拟败血症诱发的心肌损伤(SIMI)小鼠模型,并通过Arraystar小鼠LncRNA Array V3.0分析LncRNA和mRNA。微阵列结果显示,552个LncRNA和520个mRNA在假组和CLP组中有差异表达,其中LncRNA Lcn2-204是差异表达最高的上调LncRNA。通过生物信息学分析,铁代谢紊乱与SIMI有关,同时心肌铁含量和脂钙蛋白-2(Lcn2)蛋白表达增加。CNC网络包括137个正相互作用和138个负相互作用。生物信息学分析表明,多个铁相关术语被富集,6个基因(Scara5, Tfrc, Lcn2, Cp, Clic5, Ank1)与铁代谢密切相关。然后,我们构建了靶向心肌的 LncRNA Lcn2-204,发现它能通过调节铁过载和铁变态反应改善小鼠脓毒症模型的心脏损伤。此外,我们还发现 LncRNA Lcn2-204 参与了脓毒症心肌损伤中 Lcn2 表达的调控。基于这些研究结果,我们得出结论:铁超载和铁突变是导致脓毒症心肌损伤的关键机制,敲除 LncRNA Lcn2-204 可通过抑制铁超载、铁突变和 Lcn2 的表达起到保护心脏的作用。它可能为改善脓毒症引起的心肌损伤提供一种新的治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Knockdown of LncRNA Lcn2-204 alleviates sepsis-induced myocardial injury by regulation of iron overload and ferroptosis

Ferroptosis is an iron-dependent programmed cell death form resulting from lipid peroxidation damage, it plays a key role in organ damage and tumor development from various causes. Sepsis leads to severe host response after infection with high mortality. The long non-coding RNAs (LncRNAs) are involved in different pathophysiological mechanisms of multiple diseases. Here, we used cecal ligation and puncture (CLP) operation to mimic sepsis induced myocardial injury (SIMI) in mouse model, and LncRNAs and mRNAs were profiled by Arraystar mouse LncRNA Array V3.0. Based on the microarray results, 552 LncRNAs and 520 mRNAs were differentially expressed in the sham and CLP groups, among them, LncRNA Lcn2–204 was the highest differentially expressed up-regulated LncRNA. Iron metabolism disorder was involved in SIMI by bioinformatics analysis, meanwhile, myocardial iron content and lipocalin-2 (Lcn2) protein expressions were increased. The CNC network comprised 137 positive interactions and 138 negative interactions. Bioinformatics analysis showed several iron-related terms were enriched and six genes (Scara5, Tfrc, Lcn2, Cp, Clic5, Ank1) were closely associated with iron metabolism. Then, we constructed knockdown LncRNA Lcn2–204 targeting myocardium and found that it ameliorated cardiac injury in mouse sepsis model through modulating iron overload and ferroptosis. In addition, we found that LncRNA Lcn2–204 was involved in the regulation of Lcn2 expression in septic myocardial injury. Based on these findings, we conclude that iron overload and ferroptosis are the key mechanisms leading to myocardial injury in sepsis, knockdown of LncRNA Lcn2–204 plays the cardioprotective effect through inhibition of iron overload, ferroptosis and Lcn2 expression. It may provide a novel therapeutic approach to ameliorate sepsis-induced myocardial injury.

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来源期刊
CiteScore
10.70
自引率
0.00%
发文量
171
审稿时长
42 days
期刊介绍: The Journal of Molecular and Cellular Cardiology publishes work advancing knowledge of the mechanisms responsible for both normal and diseased cardiovascular function. To this end papers are published in all relevant areas. These include (but are not limited to): structural biology; genetics; proteomics; morphology; stem cells; molecular biology; metabolism; biophysics; bioengineering; computational modeling and systems analysis; electrophysiology; pharmacology and physiology. Papers are encouraged with both basic and translational approaches. The journal is directed not only to basic scientists but also to clinical cardiologists who wish to follow the rapidly advancing frontiers of basic knowledge of the heart and circulation.
期刊最新文献
Editorial Board PERM1 regulates mitochondrial energetics through O-GlcNAcylation in the heart Corrigendum to "PGE2 protects against heart failure through inhibiting TGF-β1 synthesis in cardiomyocytes and crosstalk between TGF-β1 and GRK2" [Journal of Molecular and Cellular Cardiology. 172(2022) 63-77]. Retraction notice to “The novel antibody fusion protein rhNRG1-HER3i promotes heart regeneration by enhancing NRG1-ERBB4 signaling pathway” [Journal of Molecular and Cellular Cardiology 187 (2023) 26–37] Exercise training attenuates cardiac dysfunction induced by excessive sympathetic activation through an AMPK-KLF4-FMO2 axis
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