Olanzapine impairs glycogen synthesis and insulin signaling in L6 skeletal muscle cells

被引:72
|
作者
Engl, J
Laimer, M
Niederwanger, A
Kranebitter, M
Starzinger, M
Pedrini, MT
Fleischhacker, WW
Patsch, JR
Ebenbichler, CF
机构
[1] Clin Div Gen Internal Med, Clin Dept Internal Med, Innsbruck, Austria
[2] Med Univ Innsbruck, Dept Biol Psychiat, Innsbruck, Austria
关键词
antipsychotic; schizophrenia; olanzapine; insulin; insulin resistance; insulin signaling; diabetes;
D O I
10.1038/sj.mp.4001729
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Second- generation antipsychotic agents ( SGAs) are increasingly replacing first- generation antipsychotic agents due to their superior activity against the negative symptoms of schizophrenia, decreased extrapyramidal symptoms and better tolerability. However, some SGAs are associated with adverse metabolic effects as significant weight gain, lipid disorders and diabetes mellitus. The pathogenesis of SGA- induced disturbances of glucose homeostasis is unclear. In vivo studies suggest a direct influence of SGAs on peripheral insulin resistance. To this end, we analyzed whether olanzapine might alter glycogen synthesis and the insulin- signaling cascade in L6 myotubes. Glycogen content was diminished in a dose- and time- dependent manner. Within the insulin- signaling cascade IRS- 1 tyrosine phosphorylation was induced several fold by insulin and was diminished by preincubation with olanzapine. IRS- 1- associated PI3K activity was stimulated by insulin three- fold in L6 myotubes. Olanzapine inhibited insulin- stimulated IRS- 1- associated PI3K activity in a dose-dependent manner. Protein mass of AKT, GSK- 3 and GS was unaltered, whereas phosphorylation of AKT and GSK- 3 was diminished, and pGS was increased. Finally, we compared olanzapine with amisulpride, an SGA clinically not associated with the induction of diabetes mellitus. Glycogen content was diminished in olanzapine- preincubated L6 cells, whereas this effect was not observed under the amisulpride conditions. We conclude that olanzapine impairs glycogen synthesis via inhibition of the classical insulin- signaling cascade and that this inhibitory effect may lead to the induction of insulin resistance in olanzapine- treated patients.
引用
收藏
页码:1089 / 1096
页数:8
相关论文
共 50 条
  • [1] Olanzapine impairs glycogen synthesis and insulin signaling in L6 skeletal muscle cells
    J Engl
    M Laimer
    A Niederwanger
    M Kranebitter
    M Starzinger
    M T Pedrini
    W W Fleischhacker
    J R Patsch
    C F Ebenbichler
    Molecular Psychiatry, 2005, 10 : 1089 - 1096
  • [2] Protein arginine methylation regulates insulin signaling in L6 skeletal muscle cells
    Iwasaki, Hiroaki
    Yada, Toshihiko
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 364 (04) : 1015 - 1021
  • [3] Effects of 3T3 adipocytes on interleukin-6 expression and insulin signaling in L6 skeletal muscle cells
    Seyoum, B.
    Fite, A.
    Abou-Samra, A. B.
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2011, 410 (01) : 13 - 18
  • [4] Fructose-induced ROS generation impairs glucose utilization in L6 skeletal muscle cells
    Jaiswal, N.
    Maurya, C. K.
    Pandey, J.
    Rai, A. K.
    Tamrakar, A. K.
    FREE RADICAL RESEARCH, 2015, 49 (09) : 1055 - 1068
  • [5] Molecular convergence of hexosamine biosynthetic pathway and ER stress leading to insulin resistance in L6 skeletal muscle cells
    Srinivasan, V.
    Tatu, U.
    Mohan, V.
    Balasubramanyam, M.
    MOLECULAR AND CELLULAR BIOCHEMISTRY, 2009, 328 (1-2) : 217 - 224
  • [6] Molecular convergence of hexosamine biosynthetic pathway and ER stress leading to insulin resistance in L6 skeletal muscle cells
    V. Srinivasan
    U. Tatu
    V. Mohan
    M. Balasubramanyam
    Molecular and Cellular Biochemistry, 2009, 328 : 217 - 224
  • [7] Hydrogen sulfide disrupts insulin-induced glucose uptake in L6 skeletal muscle cells
    Donoso-Barraza, Camila
    Borquez, Juan Carlos
    Sepulveda, Carlos
    Diaz-Castro, Francisco
    Sepulveda-Quinenao, Claudia
    Rodriguez, Juan Manuel
    Porras, Omar
    Troncoso, Rodrigo
    FOOD AND CHEMICAL TOXICOLOGY, 2022, 165
  • [8] Chromium malate alleviates high-glucose and insulin resistance in L6 skeletal muscle cells by regulating glucose uptake and insulin sensitivity signaling pathways
    Feng, Weiwei
    Ding, Yangyang
    Zhang, Weijie
    Chen, Yao
    Li, Qian
    Wang, Wei
    Chen, Hui
    Feng, Yun
    Zhao, Ting
    Mao, Guanghua
    Yang, Liuqing
    Wu, Xiangyang
    BIOMETALS, 2018, 31 (05) : 891 - 908
  • [9] Chromium malate alleviates high-glucose and insulin resistance in L6 skeletal muscle cells by regulating glucose uptake and insulin sensitivity signaling pathways
    Weiwei Feng
    Yangyang Ding
    Weijie Zhang
    Yao Chen
    Qian Li
    Wei Wang
    Hui Chen
    Yun Feng
    Ting Zhao
    Guanghua Mao
    Liuqing Yang
    Xiangyang Wu
    BioMetals, 2018, 31 : 891 - 908
  • [10] Glucosamine-induced insulin resistance in L6 muscle cells
    Bailey, CJ
    Turner, SL
    DIABETES OBESITY & METABOLISM, 2004, 6 (04) : 293 - 298