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Bioinformatics-Based Analysis of the lncRNA-miRNA-mRNA Network and TF Regulatory Network to Explore the Regulation Mechanism in Spinal Cord Ischemia/Reperfusion Injury

机译:基于生物信息学的LNCRNA-miRNA-mRNA网络和TF监管网络分析,探讨脊髓缺血/再灌注损伤的调控机制

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Spinal cord ischemia/reperfusion injury (SCII) is a catastrophic complication involved with cardiovascular, spine, and thoracic surgeries and can lead to paraplegia. Nevertheless, the molecular mechanism of SCII remain ill-defined.Methods: Expression profiling (GSE138966) data were obtained from GEO database. Then, differentially expressed (DE) lncRNAs and DEmRNAs were screened out with p < 0.05, and | fold change| > 1.5. Aberrant miRNAs expression in SCII was obtained from PubMed. Functional enrichment analysis of overlapping DEmRNAs between predicted mRNAs in miRDB database and DEmRNAs obtained from GSE138966 was performed using cluster Profiler R package. The lncRNA-miRNA-mRNA competitive endogenous RNA (ceRNA) network was established in light of ceRNA theory. The key lncRNAs in the ceRNA network were identified by topological analysis. Subsequently, key lncRNAs related ceRNA-pathway network and transcription factors (TFs)-mRNAs network were constructed. Simultaneously, the expression levels of hub genes were measured via qRT-PCR.Results: The results in this study indicated that 76 miRNAs, 1373 lncRNAs, and 4813 mRNAs were differentially expressed in SCII. A SCII-related ceRNA network was constructed with 154 ncRNAs, 139 mRNAs, and 51 miRNAs. According topological analysis, six lncRNAs (NONRATT019236.2, NONRATT009530.2, NONRATT026999.2, TCONS_00032391, NONRATT023112.2, and NONRATT021956.2) were selected to establish the ceRNA-pathway network, and then two candidate hub lncRNAs (NONRATT009530.2 and NONRATT026999.2) were identified. Subsequently, two lncRNA-miRNA-mRNA regulatory axes were identified. NONRATT026999.2 and NONRATT009530.2 might involve SCII via miR-20b-5p/Map3k8 axis based on the complex ceRNA network. SP1 and Hnf4a acting as important TFs might regulate Map3k8. Furthermore, qRT-PCR results showed that the NONRATT009530.2, NONRATT026999.2, Map3k8, Hfn4a, and SP1 were significantly upregulated in SCII of rats, while the miR-20b-5p was downregulated.Conclusion: Our results offer a new insight to understand the ceRNA regulation mechanism in SCII and identify highlighted lncRNA-miRNA-mRNA axes and two key TFs as potential targets for prevention and treatment of SCII.
机译:脊髓缺血/再灌注损伤(SCII)是涉及心血管,脊柱和胸部手术的灾难性并发症,可以导致截瘫患者。然而,SCII的分子机制仍然是判定的。方法:从Geo数据库获得表达分析(GSE138966)数据。然后,用P <0.05筛选差异表达(DE)LNCRNA和DEMRNA和|折叠变化| > 1.5。 SCII中的异常miRNA表达是从PUBMED获得的。使用簇分布器R包进行从GSE138966获得的预测MRNA与MRNAS中预测MRNA之间重叠DEMRNA的功能性浓缩分析。根据Cerna理论,建立了LNCRNA-miRNA-mRNA竞争内源性RNA(CERNA)网络。通过拓扑分析确定了Cerna网络中的关键LNCRNA。随后,构建了关键的LNCRNA相关的Cerna-Pathway网络和转录因子(TFS)-MrNAS网络。同时,通过QRT-PCR,测量轮毂基因的表达水平:该研究的结果表明,76 miRNA,1373LNCRNA和4813mRNA在SCII中差异表达。与SCII相关的Cerna网络建造有154个NCRNA,139 mRNA和51 MiRNA。根据拓扑分析,选择六个LNCRNA(非码019236.2,非拨号1009530.2,Tcons_00032399.2,Nonratt023112.2和Nonratt021956.2)以建立Cerna-Patwway网络,然后是两个候选集线器LNCRNA(Nonratt009530.2并确定了nonratt026999.2)。随后,鉴定了两个LNCRNA-miRNA-mRNA调节轴。 nonratt026999.2和nonratt009530.2可能涉及通过MiR-20B-5P / MAP3K8轴的SCII,基于复杂的Cerna网络。作为重要TFS的SP1和HNF4a可以调节MAP3K8。此外,QRT-PCR结果表明,在大鼠的SCII中显着上调了Nonratt009530.2,Nonratt026999.2,Map3K8,HFN4a和SP1,而MiR-20B-5P是下调的。结论:我们的结果提供了新的洞察力了解SCII中的CERNA调节机制,并鉴定突出显示的LNCRNA-miRNA-mRNA轴和两个关键TFS作为预防和治疗SCII的潜在目标。

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