Regulation of Alternative Splicing of Lipid Metabolism Genes in Sepsis-Induced Liver Damage by RNA-Binding Proteins.

IF 4.5 2区 医学 Q2 CELL BIOLOGY Inflammation Pub Date : 2024-12-01 Epub Date: 2024-05-09 DOI:10.1007/s10753-024-02017-2
Buzukela Abuduaini, Zhang Jiyuan, Aliya Rehati, Zhao Liang, Song Yunlin
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Abstract

RNA binding proteins (RBPs) have the potential for transcriptional regulation in sepsis-induced liver injury, but precise functions remain unclear. Our aim is to conduct a genome-wide expression analysis of RBPs and illuminate changes in the regulation of alternative splicing in sepsis-induced liver injury. RNA-seq data on "sepsis and liver" from the publicly available NCBI data set was analyzed, and differentially expressed RBPs and alternative splicing events (ASEs) in the healthy and septic liver were identified. Co-expression analyses of sepsis-regulated RBPs and ASEs were performed. Models of sepsis were established to validate hepatic RBP gene expression patterns with different treatments. Pairwise analysis of gene expression profiles of sham, cecum ligation puncture (CLP), and CLP with dichloroacetate (CLPDCA) mice allowed 1208 differentially expressed genes (DEGs), of which 800 were up-regulated and 408 down-regulated, to be identified. DEGs were similar in both Sham and CLPDCA mice. The KEGG analysis showed that up-regulated genes as being involved in cytokine-cytokine receptor interaction and IL-17 signaling pathway and down-regulated genes in metabolic pathways. Differences in lipid metabolism-related alternative splicing events, including A3SS, were also found in CLP and CLPDCA compared with sham mice. Thirty-seven RBPs, including S100a11, Ads2, Fndc3b, Fn1, Ddx28, Car2, Cisd1, and Ptms, were differentially expressed in CLP mice and the regulated alternative splicing genes(RASG) with the RBP shown to be enriched in lipid metabolic and oxidation-reduction-related processes by GO functional analysis. In KEEG analysis the RASG mainly enriched in metabolic pathway. The models of sepsis were constructed with different treatment groups, and S100a11 expression in the CLP group found to be higher than in the sham group, a change that was reversed by DCA. The alternative splicing ratio of Srebf1 and Cers2 decreased compared with the sham group increased after DCA treatment. Abnormal profiles of gene expression and alternative splicing were associated with sepsis-induced liver injury. Unusual expression of RBPs, such as S100a11, may regulate alternative splicing of lipid metabolism-associated genes, such as Srebf1 and Cers2, in the septic liver. RBPs may constitute potential treatment targets for sepsis-induced liver injury.

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RNA 结合蛋白对败血症诱导的肝损伤中脂代谢基因的替代剪接的调控
RNA 结合蛋白(RBPs)在脓毒症诱导的肝损伤中具有潜在的转录调控作用,但其确切功能仍不清楚。我们的目的是对 RBPs 进行全基因组表达分析,揭示脓毒症诱导的肝损伤中替代剪接调控的变化。我们分析了公开的 NCBI 数据集中有关 "脓毒症和肝脏 "的 RNA-seq 数据,并确定了健康肝脏和脓毒症肝脏中差异表达的 RBPs 和替代剪接事件(ASEs)。对脓毒症调控的 RBPs 和 ASEs 进行了共表达分析。建立了败血症模型,以验证不同治疗方法下肝脏 RBP 基因的表达模式。通过对假小鼠、盲肠结扎穿刺(CLP)小鼠和盲肠结扎穿刺加二氯醋酸(CLPDCA)小鼠的基因表达谱进行配对分析,确定了1208个差异表达基因(DEGs),其中800个上调,408个下调。Sham 和 CLPDCA 小鼠的 DEGs 相似。KEGG分析表明,上调基因参与细胞因子-细胞因子受体相互作用和IL-17信号通路,下调基因参与代谢通路。与假小鼠相比,CLP 和 CLPDCA 中与脂质代谢相关的替代剪接事件(包括 A3SS)也存在差异。包括S100a11、Ads2、Fndc3b、Fn1、Ddx28、Car2、Cisd1和Ptms在内的37个RBPs在CLP小鼠和受调控的替代剪接基因(RASG)中有差异表达,通过GO功能分析显示RBP富集于脂质代谢和氧化还原相关过程。在 KEEG 分析中,RASG 主要富集在代谢途径中。建立了不同治疗组的败血症模型,发现CLP组的S100a11表达高于假体组,这一变化被DCA逆转。经 DCA 处理后,Srebf1 和 Cers2 的替代剪接比下降,而假组的替代剪接比上升。基因表达和替代剪接的异常与脓毒症引起的肝损伤有关。S100a11等RBPs的异常表达可能会调节脓毒症肝脏中Srebf1和Cers2等脂质代谢相关基因的替代剪接。RBPs可能是脓毒症诱发肝损伤的潜在治疗靶点。
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来源期刊
Inflammation
Inflammation 医学-免疫学
CiteScore
9.70
自引率
0.00%
发文量
168
审稿时长
3.0 months
期刊介绍: Inflammation publishes the latest international advances in experimental and clinical research on the physiology, biochemistry, cell biology, and pharmacology of inflammation. Contributions include full-length scientific reports, short definitive articles, and papers from meetings and symposia proceedings. The journal''s coverage includes acute and chronic inflammation; mediators of inflammation; mechanisms of tissue injury and cytotoxicity; pharmacology of inflammation; and clinical studies of inflammation and its modification.
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