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用于定量细胞糖原水平的生物发光测定法。

Bioluminescent Assay for the Quantification of Cellular Glycogen Levels.

作者信息

Leippe Donna, Choy Rebeca, Vidugiris Gediminas, Merritt Hanne, Mellem Kevin T, Beattie David T, Ullman Julie C, Vidugiriene Jolanta

机构信息

Research and Development, Promega Corporation, Madison, Wisconsin 53711, United States.

Maze Therapeutics, South San Francisco, California 94080, United States.

出版信息

ACS Omega. 2024 Jul 17;9(30):33072-33080. doi: 10.1021/acsomega.4c04190. eCollection 2024 Jul 30.

Abstract

Glycogen is a large polymer of glucose that functions as an important means of storing energy and maintaining glucose homeostasis. Glycogen synthesis and degradation pathways are highly regulated and their dysregulation can contribute to disease. Glycogen storage diseases are a set of disorders that arise from improper glycogen metabolism. Glycogen storage disease II, known as Pompe disease, is caused by a genetic mutation that leads to increased glycogen storage in cells and tissues, resulting in progressive muscle atrophy and respiratory decline for patients. One approach for treating Pompe disease is to reduce glycogen levels by interfering with the glycogen synthesis pathway through glycogen synthase inhibitors. To facilitate the study of glycogen synthase inhibitors in biological samples, such as cultured cells, a high-throughput approach for measuring cellular glycogen was developed. A bioluminescent glycogen detection assay was automated and used to measure the glycogen content in cells grown in 384-well plates. The assay successfully quantified reduced glycogen stores in cells treated with a series of glycogen synthase 1 inhibitors, validating the utility of the assay for drug screening efforts and demonstrating its value for therapy development and glycogen metabolism research.

摘要

糖原是一种大型葡萄糖聚合物,是储存能量和维持葡萄糖稳态的重要方式。糖原合成和降解途径受到高度调控,其失调会引发疾病。糖原贮积病是一组因糖原代谢不当而引发的疾病。糖原贮积病II型,即庞贝病,由基因突变引起,导致细胞和组织中糖原储存增加,致使患者出现进行性肌肉萎缩和呼吸功能衰退。治疗庞贝病的一种方法是通过糖原合酶抑制剂干扰糖原合成途径来降低糖原水平。为便于在生物样品(如培养细胞)中研究糖原合酶抑制剂,开发了一种用于测量细胞糖原的高通量方法。一种生物发光糖原检测测定法实现了自动化,并用于测量在384孔板中生长的细胞中的糖原含量。该测定法成功量化了用一系列糖原合酶1抑制剂处理的细胞中减少的糖原储备,验证了该测定法在药物筛选工作中的实用性,并证明了其在治疗开发和糖原代谢研究中的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0225/11292620/a0c3b1df04fd/ao4c04190_0001.jpg

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