首页> 外文期刊>BMC Biochemistry >Differential pattern of glycogen accumulation after protein phosphatase 1 glycogen-targeting subunit PPP1R6 overexpression, compared to PPP1R3C and PPP1R3A, in skeletal muscle cells
【24h】

Differential pattern of glycogen accumulation after protein phosphatase 1 glycogen-targeting subunit PPP1R6 overexpression, compared to PPP1R3C and PPP1R3A, in skeletal muscle cells

机译:与骨骼肌细胞中的PPP1R3C和PPP1R3A相比,蛋白磷酸酶1糖原靶向亚基PPP1R6过表达后糖原积累的差异模式

获取原文
       

摘要

PPP1R6 is a protein phosphatase 1 glycogen-targeting subunit (PP1-GTS) abundant in skeletal muscle with an undefined metabolic control role. Here PPP1R6 effects on myotube glycogen metabolism, particle size and subcellular distribution are examined and compared with PPP1R3C/PTG and PPP1R3A/GM. PPP1R6 overexpression activates glycogen synthase (GS), reduces its phosphorylation at Ser-641/0 and increases the extracted and cytochemically-stained glycogen content, less than PTG but more than GM. PPP1R6 does not change glycogen phosphorylase activity. All tested PP1-GTS-cells have more glycogen particles than controls as found by electron microscopy of myotube sections. Glycogen particle size is distributed for all cell-types in a continuous range, but PPP1R6 forms smaller particles (mean diameter 14.4 nm) than PTG (36.9 nm) and GM (28.3 nm) or those in control cells (29.2 nm). Both PPP1R6- and GM-derived glycogen particles are in cytosol associated with cellular structures; PTG-derived glycogen is found in membrane- and organelle-devoid cytosolic glycogen-rich areas; and glycogen particles are dispersed in the cytosol in control cells. A tagged PPP1R6 protein at the C-terminus with EGFP shows a diffuse cytosol pattern in glucose-replete and -depleted cells and a punctuate pattern surrounding the nucleus in glucose-depleted cells, which colocates with RFP tagged with the Golgi targeting domain of β-1,4-galactosyltransferase, according to a computational prediction for PPP1R6 Golgi location. PPP1R6 exerts a powerful glycogenic effect in cultured muscle cells, more than GM and less than PTG. PPP1R6 protein translocates from a Golgi to cytosolic location in response to glucose. The molecular size and subcellular location of myotube glycogen particles is determined by the PPP1R6, PTG and GM scaffolding.
机译:PPP1R6是一种蛋白质磷酸酶1糖原靶向亚基(PP1-GTS),在骨骼肌中含量丰富,具有不确定的代谢控制作用。在这里检查了PPP1R6对肌管糖原代谢,颗粒大小和亚细胞分布的影响,并与PPP1R3C / PTG和PPP1R3A / GM进行了比较。 PPP1R6过表达激活糖原合酶(GS),降低其在Ser-641 / 0处的磷酸化,并增加提取的和经细胞化学染色的糖原含量,低于PTG但高于GM。 PPP1R6不会改变糖原磷酸化酶的活性。通过肌管切片的电子显微镜发现,所有测试的PP1-GTS细胞都具有比对照更多的糖原颗粒。糖原的粒径分布在所有细胞类型中,且分布范围是连续的,但是PPP1R6形成的颗粒(平均直径14.4 nm)比PTG(36.9 nm)和GM(28.3 nm)或对照细胞(29.2 nm)更小。 PPP1R6-和GM衍生的糖原颗粒均在与细胞结构相关的胞质溶胶中。 PTG衍生的糖原存在于缺乏膜和细胞器的胞浆糖原丰富的区域。糖原颗粒分散在对照细胞的胞质溶胶中。在带有EGFP的C端标记的PPP1R6蛋白在缺糖和缺糖的细胞中显示弥漫性胞质模式,在缺葡萄糖的细胞中的核周围出现点状模式,与与被β-高尔基体靶向结构域标记的RFP共同定位1,4-半乳糖基转移酶,根据PPP1R6高尔基体位的计算预测。 PPP1R6在培养的肌肉细胞中发挥强大的糖原作用,高于GM,低于PTG。 PPP1R6蛋白响应葡萄糖而从高尔基体转位至胞质位置。肌管糖原颗粒的分子大小和亚细胞位置由PPP1R6,PTG和GM支架决定。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号