Regulation of Hepatocytes in G0 and G1 Phases by NOTCH3 mRNA, miR-369-3p, and rno-Rmdn2_0006 during the Initial Stage of Rat Liver Regeneration.

IF 1.4 4区 生物学 Q4 GENETICS & HEREDITY Genetics research Pub Date : 2023-01-01 DOI:10.1155/2023/8779758
Xiayan Zang, Zihui Wang, Yafei Li, Han Gao, Jianlin Guo, Wei Jin, Cuifang Chang, Juntang Lin, Kuicheng Zhu, Cunshuan Xu
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Abstract

The key event of liver regeneration initiation (LRI) is the switch of hepatocytes from the G0 phase to the G1 phase. This study aimed to use the data from large-scale quantitatively detecting and analyzing (LQDA) to reveal the regulation of hepatocytes in the G0 or G1 phase by competing endogenous RNAs (ceRNAs) during LRI. The hepatocytes of the rat liver right lobe were isolated 0, 6, and 24 h after partial hepatectomy. Their ceRNA expression level was measured using LQDA, and the correlation among their expression, interaction, and role was revealed by ceRNA comprehensive analysis. The expression of neurogenic loci notch homologous protein 3 (NOTCH3) mRNA was upregulated in 0 h, but the expression of miR-369-3p and rno-Rmdn2_0006 of hepatocytes did not change significantly. Meanwhile, the expression of the G0 phase-related gene CDKN1c was promoted by NOTCH3 upregulation, and the expression of the G1 phase-related gene PSEN2 was inhibited by NOTCH3 downregulation. On the contrary, the expression of NOTCH3 mRNA and rno-Rmdn2_0006 was upregulated at 6 h, but the expression of miR-136-3p was downregulated. The expression of the G1 phase-related genes CHUK, DDX24, HES1, NET1, and STAT3 was promoted by NOTCH3 upregulation, and the expression of the G0 phase-related gene CDKN1a was inhibited by NOTCH3 downregulation. These results suggested that the ceRNAs and the NOTCH3-regulated G0 phase- and G1 phase-related genes showed a correlation in expression, interaction, and role. They together regulated the hepatocytes in the G0 phase at 0 h and in the G1 phase at 6 h. These findings might help understand the mechanism by which ceRNA together regulated the hepatocytes in the G0 or G1 phase.

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NOTCH3 mRNA、miR-369-3p和rno-Rmdn2_0006在大鼠肝脏再生初期对肝细胞G0和G1期的调控
肝再生起始(LRI)的关键事件是肝细胞从G0期转向G1期。本研究旨在利用大规模定量检测和分析(LQDA)的数据揭示LRI过程中竞争内源性rna (ceRNAs)对肝细胞G0或G1期的调控。大鼠肝部分切除后0、6、24 h分别分离肝右叶肝细胞。采用LQDA法测定它们的ceRNA表达水平,通过ceRNA综合分析揭示它们的表达、相互作用和作用之间的相关性。神经源性位点notch同源蛋白3 (NOTCH3) mRNA表达在0 h上调,但肝细胞中miR-369-3p和rno-Rmdn2_0006的表达无明显变化。同时,上调NOTCH3可促进G1期相关基因CDKN1c的表达,下调NOTCH3可抑制G1期相关基因PSEN2的表达。相反,NOTCH3 mRNA和rno-Rmdn2_0006的表达在6 h上调,而miR-136-3p的表达下调。上调NOTCH3可促进G1期相关基因CHUK、DDX24、HES1、NET1、STAT3的表达,下调NOTCH3可抑制G0期相关基因CDKN1a的表达。这些结果表明,cerna与notch3调控的G0期和G1期相关基因在表达、相互作用和作用上存在相关性。它们共同调控0 h的G0期和6 h的G1期肝细胞。这些发现可能有助于理解ceRNA在G0或G1期共同调节肝细胞的机制。
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来源期刊
Genetics research
Genetics research 生物-遗传学
自引率
6.70%
发文量
74
审稿时长
>12 weeks
期刊介绍: Genetics Research is a key forum for original research on all aspects of human and animal genetics, reporting key findings on genomes, genes, mutations and molecular interactions, extending out to developmental, evolutionary, and population genetics as well as ethical, legal and social aspects. Our aim is to lead to a better understanding of genetic processes in health and disease. The journal focuses on the use of new technologies, such as next generation sequencing together with bioinformatics analysis, to produce increasingly detailed views of how genes function in tissues and how these genes perform, individually or collectively, in normal development and disease aetiology. The journal publishes original work, review articles, short papers, computational studies, and novel methods and techniques in research covering humans and well-established genetic organisms. Key subject areas include medical genetics, genomics, human evolutionary and population genetics, bioinformatics, genetics of complex traits, molecular and developmental genetics, Evo-Devo, quantitative and statistical genetics, behavioural genetics and environmental genetics. The breadth and quality of research make the journal an invaluable resource for medical geneticists, molecular biologists, bioinformaticians and researchers involved in genetic basis of diseases, evolutionary and developmental studies.
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