Investigation of the relationship between betatrophin and certain key enzymes involved in carbohydrate and lipid metabolism in insulin-resistant mice.

IF 1.1 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Hormone Molecular Biology and Clinical Investigation Pub Date : 2023-03-06 eCollection Date: 2023-09-01 DOI:10.1515/hmbci-2022-0104
Funda Bulut Arikan, Mustafa Ulas, Yasemin Ustundag, Hakan Boyunaga, Nermin Dindar Badem
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Abstract

Objectives: The present study sought to examine the relationship of betatrophin with certain key enzymes, namely lactate dehydrogenase-5 (LDH5), citrate synthase (CS), and acetyl-CoA carboxylase-1 (ACC1), in insulin-resistant mice.

Methods: Eight-week-old male C57BL6/J mice were used in this study (experimental group n=10 and control group n=10). S961 was administered using an osmotic pump to induce insulin resistance in the mice. The betatrophin, LDH5, CS, and ACC1 expression levels were determined from the livers of the mice using the real-time polymerase chain reaction (RT-PCR) method. Moreover, biochemical parameters such as the serum betatrophin, fasting glucose, insulin, triglyceride, total cholesterol, and high-density lipoprotein (HDL) and low-density lipoprotein (LDL) cholesterol levels were analyzed.

Results: The betatrophin expression and serum betatrophin (p=0.000), fasting glucose, insulin, triglyceride (p≤0.001), and total cholesterol (p=0.013) levels were increased in the experimental group. In addition, the CS gene expression level was statistically significantly decreased in the experimental group (p=0.01). Although strong correlation was found between the expression and serum betatrophin and triglyceride levels, no correlation was found between the betatrophin gene expression and the LDH5, ACC1, and CS gene expression levels.

Conclusions: The betatrophin level appears to play an important role in the regulation of triglyceride metabolism, while insulin resistance increases both the betatrophin gene expression and serum levels and decreases the CS expression level. The findings suggest that betatrophin may not regulate carbohydrate metabolism through CS and LDH5 or lipid metabolism directly through the ACC1 enzyme.

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β营养素与胰岛素抵抗小鼠碳水化合物和脂质代谢中某些关键酶之间关系的研究。
目的:本研究试图在胰岛素抵抗小鼠中检测β营养素与某些关键酶,即乳酸脱氢酶-5(LDH5)、柠檬酸合成酶(CS)和乙酰辅酶A羧化酶-1(ACC1)的关系。方法:选用8周龄雄性C57BL6/J小鼠(实验组n=10,对照组n=10)。使用渗透泵施用S961以在小鼠中诱导胰岛素抵抗。使用实时聚合酶链式反应(RT-PCR)方法从小鼠肝脏中测定β-营养素、LDH5、CS和ACC1的表达水平。此外,还分析了血清β营养素、空腹血糖、胰岛素、甘油三酯、总胆固醇以及高密度脂蛋白(HDL)和低密度脂蛋白胆固醇水平等生化参数。结果:实验组的β-营养素表达和血清β-营养蛋白(p=0.000)、空腹血糖、胰岛素、甘油三酯(p≤0.001)和总胆固醇(p=0.013)水平均升高。此外,实验组CS基因表达水平在统计学上显著降低(p=0.01)。尽管该表达与血清β-营养素和甘油三酯水平之间存在很强的相关性,但β-营养蛋白基因表达与LDH5、ACC1和CS基因表达之间没有相关性。结论:β营养素水平似乎在甘油三酯代谢的调节中起着重要作用,而胰岛素抵抗增加了β营养素基因的表达和血清水平,并降低了CS的表达水平。研究结果表明,β营养素可能不通过CS和LDH5调节碳水化合物代谢,也不直接通过ACC1酶调节脂质代谢。
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来源期刊
Hormone Molecular Biology and Clinical Investigation
Hormone Molecular Biology and Clinical Investigation BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
2.60
自引率
0.00%
发文量
55
期刊介绍: Hormone Molecular Biology and Clinical Investigation (HMBCI) is dedicated to the provision of basic data on molecular aspects of hormones in physiology and pathophysiology. The journal covers the treatment of major diseases, such as endocrine cancers (breast, prostate, endometrium, ovary), renal and lymphoid carcinoma, hypertension, cardiovascular systems, osteoporosis, hormone deficiency in menopause and andropause, obesity, diabetes, brain and related diseases, metabolic syndrome, sexual dysfunction, fetal and pregnancy diseases, as well as the treatment of dysfunctions and deficiencies. HMBCI covers new data on the different steps and factors involved in the mechanism of hormone action. It will equally examine the relation of hormones with the immune system and its environment, as well as new developments in hormone measurements. HMBCI is a blind peer reviewed journal and publishes in English: Original articles, Reviews, Mini Reviews, Short Communications, Case Reports, Letters to the Editor and Opinion papers. Ahead-of-print publishing ensures faster processing of fully proof-read, DOI-citable articles.
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