Molecular process of glucose uptake and glycogen storage due to hamamelitannin via insulin signalling cascade in glucose metabolism

被引:0
作者
Praveen Kumar Issac
Ajay Guru
Sri Snehaa Chandrakumar
Christy Lite
N. T. Saraswathi
Mariadhas Valan Arasu
Naif Abdullah Al-Dhabi
Aziz Arshad
Jesu Arockiaraj
机构
[1] SRM Institute of Science and Technology,SRM Research Institute
[2] Anna University,Department of Biotechnology
[3] Madras Christian College,Endocrine and Exposome Laboratory, Department of Zoology
[4] SASTRA Deemed to be University,Molecular Biophysics Laboratory, School of Chemical and Biotechnology
[5] King Saud University,Department of Botany and Microbiology, College of Science
[6] Universiti Putra Malaysia,International Institute of Aquaculture and Aquatic Sciences (I
[7] Universiti Putra Malaysia,AQUAS)
来源
Molecular Biology Reports | 2020年 / 47卷
关键词
Hamamelitannin; Insulin signalling; Molecular process; Glycogen synthesis; Type II diabetes mellitus;
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学科分类号
摘要
Understanding the mechanism by which the exogenous biomolecule modulates the GLUT-4 signalling cascade along with the information on glucose metabolism is essential for finding solutions to increasing cases of diabetes and metabolic disease. This study aimed at investigating the effect of hamamelitannin on glycogen synthesis in an insulin resistance model using L6 myotubes. Glucose uptake was determined using 2-deoxy-d-[1-3H] glucose and glycogen synthesis were also estimated in L6 myotubes. The expression levels of key genes and proteins involved in the insulin-signaling pathway were determined using real-time PCR and western blot techniques. The cells treated with various concentrations of hamamelitannin (20 µM to 100 µM) for 24 h showed that, the exposure of hamamelitannin was not cytotoxic to L6 myotubes. Further the 2-deoxy-d-[1-3H] glucose uptake assay was carried out in the presence of wortmannin and Genistein inhibitor for studying the GLUT-4 dependent cell surface recruitment. Hamamelitannin exhibited anti-diabetic activity by displaying a significant increase in glucose uptake (125.1%) and glycogen storage (8.7 mM) in a dose-dependent manner. The optimum concentration evincing maximum activity was found to be 100 µm. In addition, the expression of key genes and proteins involved in the insulin signaling pathway was studied to be upregulated by hamamelitannin treatment. Western blot analysis confirmed the translocation of GLUT-4 protein from an intracellular pool to the plasma membrane. Therefore, it can be conceived that hamamelitannin exhibited an insulinomimetic effect by enhancing the glucose uptake and its further conversion into glycogen by regulating glucose metabolism.
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页码:6727 / 6740
页数:13
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