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罪魁祸首还是后果:了解糖尿病中肌肉的代谢失调

Culprits or consequences: Understanding the metabolic dysregulation of muscle in diabetes.

作者信息

O'Reilly Colleen L, Uranga Selina, Fluckey James D

机构信息

Health and Kinesiology, Texas A&M University, TX 77843, United States.

出版信息

World J Biol Chem. 2021 Sep 27;12(5):70-86. doi: 10.4331/wjbc.v12.i5.70.

Abstract

The prevalence of type 2 diabetes (T2D) continues to rise despite the amount of research dedicated to finding the culprits of this debilitating disease. Skeletal muscle is arguably the most important contributor to glucose disposal making it a clear target in insulin resistance and T2D research. Within skeletal muscle there is a clear link to metabolic dysregulation during the progression of T2D but the determination of culprits consequences of the disease has been elusive. Emerging evidence in skeletal muscle implicates influential cross talk between a key anabolic regulatory protein, the mammalian target of rapamycin (mTOR) and its associated complexes (mTORC1 and mTORC2), and the well-described canonical signaling for insulin-stimulated glucose uptake. This new understanding of cellular signaling crosstalk has blurred the lines of what is a culprit and what is a consequence with regard to insulin resistance. Here, we briefly review the most recent understanding of insulin signaling in skeletal muscle, and how anabolic responses favoring anabolism directly impact cellular glucose disposal. This review highlights key cross-over interactions between protein and glucose regulatory pathways and the implications this may have for the design of new therapeutic targets for the control of glucoregulatory function in skeletal muscle.

摘要

尽管致力于寻找这种使人衰弱疾病病因的研究数量众多,但2型糖尿病(T2D)的患病率仍在持续上升。骨骼肌可以说是葡萄糖代谢的最重要贡献者,这使其成为胰岛素抵抗和T2D研究中的明确靶点。在T2D进展过程中,骨骼肌内存在与代谢失调的明确联系,但确定该疾病的病因和后果一直难以捉摸。骨骼肌中的新证据表明,关键的合成代谢调节蛋白——雷帕霉素哺乳动物靶蛋白(mTOR)及其相关复合物(mTORC1和mTORC2)之间存在有影响的相互作用,以及胰岛素刺激的葡萄糖摄取的经典信号传导。这种对细胞信号相互作用的新理解模糊了胰岛素抵抗中病因和后果的界限。在此,我们简要回顾对骨骼肌中胰岛素信号传导的最新理解,以及有利于合成代谢的合成代谢反应如何直接影响细胞葡萄糖代谢。本综述强调了蛋白质和葡萄糖调节途径之间的关键交叉相互作用,以及这可能对设计控制骨骼肌葡萄糖调节功能的新治疗靶点产生的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/007f/8473417/9d763b34f2e7/WJBC-12-70-g001.jpg

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