大菱鲆肝细胞系的建立和特征及其在葡萄糖代谢研究中的应用

IF 2.8 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Mingzhu Pan, Gaochan Qin, Jiahuan Liu, Mengxi Yang, Xinxin Li, Zhenhua Wu, Kangsen Mai, Wenbing Zhang
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引用次数: 0

摘要

本研究旨在建立肝细胞系,探讨其在糖代谢中的作用。从大菱鲆(Scophthalmus maximus L.)肝脏组织中建立了连续细胞系THL (turbot hepatocyte line)。至今已成功传承了60多代。THL细胞呈上皮样形态,正常染色体数为44条。采用不同的方法鉴定肝细胞。THL细胞周期性酸-希夫(PAS)染色呈阳性,THL细胞中检测到两种肝细胞关键功能蛋白细胞角蛋白- 18 (CK- 18)和白蛋白(ALB)。CCK- 8结果表明,含15mm葡萄糖的培养基中THL的细胞活力最佳。相反,当葡萄糖浓度超过50 mM时,THL细胞活力明显受损。Western blot和qRT-PCR检测不同浓度葡萄糖处理的细胞中基因和蛋白的表达。0 mM、15 mM和50 mM葡萄糖浓度培养的细胞结果显示,与0 mM葡萄糖组相比,15 mM葡萄糖可提高葡萄糖激酶(gk)的基因表达,降低胞质磷酸烯醇丙酮酸羧激酶(cpepck)、线粒体磷酸烯醇丙酮酸(mpepck)、葡萄糖- 6-磷酸酶1 (g6pase1)、叉头盒1 (foxo1)和葡萄糖调节蛋白78 (grp78)的基因表达。与15 mM葡萄糖处理相比,50 mM组gk的表达量显著降低,而cpepck、mpepck、g6pase1、foxo1、grp78的表达量显著升高。此外,与15 mM组相比,50 mM处理组FoxO1和GRP78蛋白表达量显著增加。本研究发现,过高的葡萄糖水平可以激活fox01介导的糖异生和grp78介导的内质网应激通路,降低糖酵解通路,从而破坏肝细胞内的葡萄糖稳态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Establishment and Characterization of Hepatocyte Line from Turbot (Scophthalmus maximus L.) and Its Application in the Study of Glucose Metabolism

Establishment and Characterization of Hepatocyte Line from Turbot (Scophthalmus maximus L.) and Its Application in the Study of Glucose Metabolism

The present study was to establish a hepatocyte line and investigate its role in glucose metabolism. A continuous cell line, THL (turbot hepatocyte line), was established from the liver tissue of turbot (Scophthalmus maximus L.). It has been successfully passaged more than 60 generations. The THL cells showed an epithelial-like morphology and the normal chromosome number was 44. Different methods were used to identify the hepatocytes. Periodic acid-Schiff (PAS) staining for THL cells was positive, and two key functional proteins of hepatocytes, cytokeratin- 18 (CK- 18) and albumin (ALB), were detected in THL cells. The results of CCK- 8 indicated that a medium containing 15 mM glucose showed optimal cell viability of THL. Conversely, elevating glucose concentrations beyond 50 mM markedly impaired THL cell viability. Western blot and qRT-PCR were employed to assess the gene and protein expression in cells treated with varying concentrations of glucose. The results of cells incubated with 0 mM, 15 mM, and 50 mM glucose concentrations showed that compared with the 0 mM glucose group, 15 mM glucose could increase the gene expression of glucokinase (gk) and decrease the gene expression of cytosolic phosphoenolpyruvate carboxykinase (cpepck), mitochondrial phosphoenolpyruvate (mpepck), glucose- 6-phosphatase 1 (g6pase1), forkhead box o1 (foxo1), and glucose-regulated protein 78 (grp78). Compared to 15 mM glucose treatment, the expression of gk in the 50 mM group was significantly decreased, but the expression of cpepck, mpepck, g6pase1, foxo1, and grp78 was significantly increased. Moreover, the protein expression of FoxO1 and GRP78 in 50 mM treatment group was significantly increased compared to that in the15 mM group. In the present study, it was found that excessive glucose level can activate the pathways of FoxO1-mediated gluconeogenesis and GRP78-mediated endoplasmic reticulum stress and reduce the glycolytic pathway, thus disrupting the glucose homeostasis in hepatocytes.

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来源期刊
Marine Biotechnology
Marine Biotechnology 工程技术-海洋与淡水生物学
CiteScore
4.80
自引率
3.30%
发文量
95
审稿时长
2 months
期刊介绍: Marine Biotechnology welcomes high-quality research papers presenting novel data on the biotechnology of aquatic organisms. The journal publishes high quality papers in the areas of molecular biology, genomics, proteomics, cell biology, and biochemistry, and particularly encourages submissions of papers related to genome biology such as linkage mapping, large-scale gene discoveries, QTL analysis, physical mapping, and comparative and functional genome analysis. Papers on technological development and marine natural products should demonstrate innovation and novel applications.
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