Kyriakoudi Styliana, Theodoulou Andria, Potamiti Louiza, Schumacher Fabian, Zachariou Margarita, Papacharalambous Revekka, Kleuser Burkhard, Panayiotidis Mihalis I, Drousiotou Anthi, Petrou Petros P
Biochemical Genetics Department, The Cyprus Institute of Neurology and Genetics, P.O. Box 23462, 1683, Nicosia, Cyprus.
Cancer Genetics, Therapeutics & Ultrastructural Pathology Department, The Cyprus Institute of Neurology and Genetics, P.O. Box 23462, 1683, Nicosia, Cyprus.
Biochimie. 2022 Sep;200:172-183. doi: 10.1016/j.biochi.2022.06.003. Epub 2022 Jun 9.
Starch binding domain-containing protein 1 (STBD1) is an endoplasmic reticulum (ER)-resident, glycogen-binding protein. In addition to glycogen, STBD1 has been shown to interact with several proteins implicated in glycogen synthesis and degradation, yet its function in glycogen metabolism remains largely unknown. In addition to the bulk of the ER, STBD1 has been reported to localize at regions of physical contact between mitochondria and the ER, known as Mitochondria-ER Contact sites (MERCs). Given the emerging correlation between distortions in the integrity of hepatic MERCs and insulin resistance, our study aimed to delineate the role of STBD1 in vivo by addressing potential abnormalities in glucose metabolism and ER-mitochondria communication associated with insulin resistance in mice with targeted inactivation of Stbd1 (Stbd1KO). We show that Stbd1KO mice at the age of 24 weeks displayed reduced hepatic glycogen content and aberrant control of glucose homeostasis, compatible with insulin resistance. In line with the above, Stbd1-deficient mice presented with increased fasting blood glucose and insulin levels, attenuated activation of insulin signaling in the liver and skeletal muscle and elevated liver sphingomyelin content, in the absence of hepatic steatosis. Furthermore, Stbd1KO mice were found to exhibit enhanced ER-mitochondria association and increased mitochondrial fragmentation in the liver. Nevertheless, the enzymatic activity of hepatic respiratory chain complexes and ER stress levels in the liver were not altered. Our findings identify a novel important role for STBD1 in the control of glucose metabolism, associated with the integrity of hepatic MERCs.
含淀粉结合域蛋白1(STBD1)是一种内质网(ER)驻留的糖原结合蛋白。除了糖原,STBD1已被证明可与几种参与糖原合成和降解的蛋白质相互作用,但其在糖原代谢中的功能仍 largely 未知。除了内质网的主体部分,据报道 STBD1 还定位于线粒体与内质网之间的物理接触区域,即线粒体 - 内质网接触位点(MERCs)。鉴于肝脏 MERCs 完整性的扭曲与胰岛素抵抗之间新出现的相关性,我们的研究旨在通过解决与 Stbd1 基因靶向失活(Stbd1KO)小鼠胰岛素抵抗相关的葡萄糖代谢和内质网 - 线粒体通讯的潜在异常,来阐明 STBD1 在体内的作用。我们发现,24 周龄的 Stbd1KO 小鼠肝脏糖原含量降低,葡萄糖稳态控制异常,与胰岛素抵抗相符。与此一致,Stbd1 缺陷小鼠空腹血糖和胰岛素水平升高,肝脏和骨骼肌中胰岛素信号的激活减弱,肝脏鞘磷脂含量升高,且无肝脂肪变性。此外,发现 Stbd1KO 小鼠肝脏中内质网 - 线粒体的关联增强,线粒体碎片化增加。然而,肝脏呼吸链复合物的酶活性和肝脏中的内质网应激水平未改变。我们的研究结果确定了 STBD1 在葡萄糖代谢控制中的一个新的重要作用,这与肝脏 MERCs 的完整性相关。