肝细胞癌中的 PIWIL 基因:一种揭示小鼠表达失调和 ceRNA 网络的多组学方法。

IF 1.9 Q3 GENETICS & HEREDITY BMC genomic data Pub Date : 2024-11-27 DOI:10.1186/s12863-024-01283-1
Hailing Huang, Ruiqun Lu, Shenni Peng, Shi Huang, Yinyin Mo, Genliang Li
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引用次数: 0

摘要

这项多组学研究利用全转录组测序、生物信息学和小鼠反转录定量聚合酶链反应(RT-qPCR),深入研究了PIWIL基因的表达模式及其与肝细胞癌(HCC)进展的相关性。我们确定了 PIWIL 基因在 HCC 和对照组织中的不同表达水平,并分析了它们在与调控性非编码 RNA 介导的基因沉默(RNGS)相关的竞争性内源性 RNA(ceRNA)网络中的作用。我们的研究结果表明,Piwil1 和 Piwil4 过表达,而 Piwil2 低表达。作为ceRNA,特定的lncRNA,包括Pvt1、Gas5和BGIGI10090_38749,可能海绵吸收miR-351-5p和miR-31-5p,促进Piwil1和Piwil4的表达,而缺乏ceRNA海绵吸收的miR-133b-3p则继续抑制Piwil2。通过与 RNGS 基因(尤其是 Dhx9、Drosha、Mov10 和 Tdrd1)编码的 PPI 蛋白相互作用,PIWI 家族成员可能在调控基因表达和代谢过程中发挥多方面的作用,从而参与 HCC 的发生和发展。PPI 网络中的这些相互作用可能会影响 PIWIL 蛋白的稳定性和活性,并有助于基因表达和 HCC 进展的整体调控。在 RNGS 中,观察到了多种多样的 miRNA、基因、lncRNA、circRNA 和假基因,它们之间的相互作用错综复杂,有可能编织出一个复杂的 ceRNA 调控网络。RNGS 中异常表达的 miRNA 靶向基因与关键的生物过程有关,如脂质代谢和免疫反应,它们对肿瘤细胞的存活至关重要;还与支持肿瘤生长和侵袭的过程有关,如翻译和细胞骨架组织。这种调控反映在下调靶点和上调靶点不同的 KEGG 通路中,凸显了 PIWIL 基因在调控 HCC 进展中的双重作用。研究得出结论,PIWI 家族成员与 HCC 的进展存在相关性,并在发病机制中发挥着不同的作用,Piwil1 和 Piwil4 的过度表达可能会促进 HCC 的进展,而 Piwil2 的表达不足则可能会抑制肿瘤的发展。ceRNA机制和PPI网络分别是调控PIWIL基因表达和功能的关键。错综复杂的ceRNA网络可能调控着RNGS中miRNA靶向基因的表达,而miRNA靶向基因可能对肿瘤的存活和发展至关重要,并根据HCC中miRNA靶向基因失调的富集结果对免疫反应和细胞生长产生影响。这项多组学研究揭示了 HCC 分子的复杂性,强调了表观遗传调控的关键作用,尤其是 PIWI 家族基因与其他基因和 ncRNA 在 HCC 病理的 RNGS 过程中的影响。这些发现为了解 HCC 的分子机制提供了宝贵的信息,可为今后研究潜在的治疗干预靶点提供参考。未来的研究可以在本文研究结果的基础上,整合各种方法,进一步阐明 PIWIL 基因在 HCC 进展中的作用。
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PIWIL genes in hepatocellular carcinoma: a multi-omics approach uncovering dysregulated expression and ceRNA networks in mice.

This multi-omics study delves into the expression patterns of PIWIL genes and their correlation with hepatocellular carcinoma (HCC) progression, utilizing whole transcriptome sequencing, bioinformatics, and reverse transcription quantitative polymerase chain reaction (RT-qPCR) in mice. We identified differential expression levels of PIWIL genes between HCC and control tissues and analyzed their roles within the competing endogenous RNA (ceRNA) network related to regulatory non-coding RNA-mediated gene silencing (RNGS). Our findings showed that Piwil1 and Piwil4 were overexpressed while Piwil2 is underexpressed. As ceRNAs, specific lncRNAs, including Pvt1, Gas5, and BGIGI10090_38749, might sponge up miR-351-5p and miR-31-5p, promoting Piwil1 and Piwil4 expression, while miR-133b-3p, lacking ceRNA sponge absorption, continues to inhibit Piwil2. Through their interactions with PPI proteins encoded by RNGS genes, especially Dhx9, Drosha, Mov10, and Tdrd1, PIWI family members might play a multifaceted role in regulating gene expression and metabolic processes, thereby involving the development and progression of HCC. These interactions within the PPI network could influence the stability and activity of PIWIL proteins and contribute to the overall regulation of gene expression and HCC progression. In the RNGS, a diverse array of miRNAs, genes, lncRNAs, circRNAs, and pseudogenes have been observed, which are suggested to intricately interplay, potentially weaving a complex ceRNA regulatory network. Abnormally expressed miRNA-targeted genes in RNGS are associated with key biological processes, such as lipid metabolism and immune responses, crucial for tumor cell survival, and processes supporting tumor growth and invasion, like translation and cytoskeleton organization. This regulation is reflected in distinct KEGG pathways for downregulated and upregulated targets, highlighting the dualistic role of PIWIL genes in modulating HCC progression. The study concludes that PIWI family members have a correlation with HCC progression and play divergent roles in the pathogenesis, with overexpression of the Piwil1 and Piwil4 potentially promoting HCC progression and underexpression of Piwil2 likely suppressing tumor development. The ceRNA mechanism and PPI network are crucial in regulating the expression and function of PIWIL genes, respectively. The intricate ceRNA network potentially regulates the expression of miRNA-targeted genes in RNGS, which might be crucial for tumor survival and promotion, with impacts on immune responses and cell growth based on enriching results of dysregulated miRNA-targeted genes in HCC. By shedding light on the molecular intricacies of HCC, this multi-omics study underscores the pivotal roles of epigenetic regulations, especially the influence of PIWI family genes with other genes and ncRNAs in the RNGS process in HCC pathology. The findings offer valuable insights into the molecular mechanisms underpinning HCC, which may inform future research into potential targets for therapeutic intervention. The future research could benefit from integrating a diverse range of methodologies to further elucidate the roles of PIWIL genes in HCC progression, building upon the findings presented here.

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