Expression change and role of myeloma cancer gene mRNA and the non-coding RNA in the hepatocyte cycle initiation and termination during the rat  liver regeneration

XUE Qi-jie CHANG Cui-fang WANG Zi-hui ZANG Xia-yan LIN Kai-lin ZHANG Chun-bo HAN Lu YE Bing-yu XU Cun-shuan

Acta Anatomica Sinica ›› 2023, Vol. 54 ›› Issue (4) : 414-419.

PDF(2846 KB)
Welcome to visit Acta Anatomica Sinica! Today is Chinese
PDF(2846 KB)
Acta Anatomica Sinica ›› 2023, Vol. 54 ›› Issue (4) : 414-419. DOI: 10.16098/j.issn.0529-1356.2023.04.006
Cell and Molecules Biology

Expression change and role of myeloma cancer gene mRNA and the non-coding RNA in the hepatocyte cycle initiation and termination during the rat  liver regeneration

  • XUE Qi-jie1, 2 CHANG  Cui-fang1, 2 WANG Zi-hui1, 2 ZANG Xia-yan1, 2 LIN Kai-lin1, 2 ZHANG Chun-bo1, 2 HAN Lu1, 2 YE Bing-yu1, 2* XU Cun-shuan1, 2 *#br#
    #br#
Author information +
History +

Abstract

Objective  To explore the role pathway and pattern of the myeloma cancer gene (MYC) and its mRNA interaction with the microRNAs(miRNAs) and circular RNA(circRNAs) at hour 0, hour 6 and hour 72 in the rat liver regeneration.     Methods  The rat 2/3 hepatectomy (PH) model was prepared as described by Higgins, the hepatocytes were isolated according to the method  of Smedsrod et al. The expression changes of mRNA, miRNA and circRNA [together named as competing endogenous RNA (ceRNA)] were detected by the large-scale quantitative detection technology, the interaction network of ceRNA was constructed by Cytoscape 3.2 software, and their correlation in expression and role were analyzed by ceRNA comprehensive analysis.   Results  It was found that at hour 0 and hour 6 after PH, the ratio value of MYC mRNA showed 0.15±0.03 and 2.36±0.20, miR-134-5p indicated 3.22±0.61 and 0.08±0.02, circRNA_12112 displayed 0.68±0.21 and 13.35±3.53. At the same time, the cell cycle initiation-related genes ras association domain family member 1 (RASSF1), cyclin dependent kinase 2 (CDK2), superoxide dismutase 2 (SOD2), which were promoted in expression by MYC, were down-regulated at  hour 0 after PH, but the cell cycle initiation-related genes nestin (NES), RAD21 cohesin complex component (RAD21), CUE domain containing 2 (CUEDC2), which are inhibieted in expression by MYC, had no meaningful express changes at hour 0 after PH. On the other hand, the cell cycle initiation-related gene SOD2, which was promoted in expression by MYC, was upregulated at hour 6 after PH, but the cell cycle initiation-related genes NES, RAD21, CUEDC2, which are inhibieted in expression by MYC, were down-regulated at hour 6 after PH. In contrary, at hour 72 after PH, the ratio value of MYC mRNA showed 2.36±0.20, miR-880-3p indicated 0.54±0.01, circRNA_09599 displayd 0.54±0.16. At the same time, the cell cycle termination-related gene hepatocyte growth factor (HGF), which is promoted in expression by MYC, was up-regulated 72 hours after PH, the cell cycle termination-related genes MET proto-oncogene receptor tyrosine kinase (MET) and cyclin dependent kinase inhibitor 1A (CDKN1A), which are inhibieted in expression by MYC, were down-regulated 72 hours after PH.    Conclusion  The correlation in expression and role of the miRNAs, which are inhibited by circRNAs, MYC, its mRNA is inhibited by miRNAs, and the cell cycle initiation-related and cell cycle termination-related genes, which are regulated by MYC, are helpful for the hepatocyte to be in cell cycle initiation state at hour 6 after PH and to be in cell cycle termination state at hour 72 after PH.

Key words

Liver regeneration / Hepatocytal cycle initiation / Hepatocytal cycle termination / Biological high-throughput detection / Rat

Cite this article

Download Citations
XUE Qi-jie CHANG Cui-fang WANG Zi-hui ZANG Xia-yan LIN Kai-lin ZHANG Chun-bo HAN Lu YE Bing-yu XU Cun-shuan. Expression change and role of myeloma cancer gene mRNA and the non-coding RNA in the hepatocyte cycle initiation and termination during the rat  liver regeneration[J]. Acta Anatomica Sinica. 2023, 54(4): 414-419 https://doi.org/10.16098/j.issn.0529-1356.2023.04.006

References

[1]Fausto N, Campbell JS, Riehle KJ. Liver regeneration [J]. J Hepatol, 2006, 43(2 Suppl 1):S45-53.
[2]Fausto N. Liver regeneration [J]. J Hepatol, 2000, 32(1 Suppl):19-31.

[3]Mao SA, Glorioso JM, Nyberg SL. Liver regeneration [J]. Transl Res, 2014, 163(4):352-362.

[4]Michalopoulos GK, DeFrances M. Liver regeneration [J]. Adv Biochem Eng Biotechnol, 2005, 93:101-134.

[5]Wei X, Li J, Hu J, et al. Circular RNAs in cell cycle regulation: mechanisms to clinical significance [J]. Cell Prolif, 2021, 54(12):e13143.
[6]Mens MMJ, Ghanbari M. Cell cycle regulation of stem cells by micrornAs [J]. Stem Cell Rev Rep, 2018, 14(3):309-322.
[7]Barnum KJ, O’Connell MJ. Cell cycle regulation by checkpoints [J]. Methods Mol Biol, 2014, 1170:29-40.
[8]Bretones G, Delgado MD, León J. Myc and cell cycle control [J]. Biochim Biophys Acta, 2015, 1849(5):506-516.
[9]Higgins GM, Anderson RM. Experimental pathology of the liver: restoration of the liver of the white rat following partial surgical removal [J]. Arch Pathol, 1931, 12:186-202.
 [10]Smedsrod B, Pertoft H, Eggertsen G. Functional and morphological characterization of cultures of Kupffer cells and liver endothelial cells prepared by means of density separation in Percoll, and selective substrate adhereence [J]. J Cell Tissure Res, 1985, 241(3): 639-649.
[11]Smedsrod B, Pertoft H. Preparation of pure hepatocytes and reticuloendothelial cells in high yield from a single rat liver by means of Percoll centrifugation and selective adhereence [J]. J Leukcyte Bio, 1985, 38: 213-230.
[12]Zang XY, Wang ZH, Li YF, et al. Expression and role of CCAAT enhancer binding protein α mRNA, microRNA-144-3p and three kinds of circular RNAs of hepatocytes during the rat liver regeneration initiation [J]. Acta Anatomica Sinica, 2021, 52 (6): 904-908. (in Chinese)
臧夏炎,王子慧,李亚霏,等.大鼠肝再生启动阶段肝细胞CCAAT增强子结合蛋白α mRNA、微小RNA-144-3p和3种环状RNA的表达和作用[J].解剖学报, 2021, 52(6): 904-908.
[13]Fagundes R, Teixeira LK. Cyclin E/CDK2: DNA replication, replication stress and genomic instability [J]. Front Cell Dev Biol, 2021, 9:774845.
[14]Xiao JB, Leng AM, Zhang YQ, et al. CUEDC2: multifunctional roles in carcinogenesis [J]. Front Biosci (Landmark Ed), 2019, 24(5):935-946. 
 [15]Li F, Lo TY, Miles L, et al. The Atr-Chek1 pathway inhibits axon regeneration in response to piezo-dependent mechanosensation [J]. Nat Commun, 2021, 12(1):3845. 
PDF(2846 KB)

Accesses

Citation

Detail

Sections
Recommended

/