检测心肌糖原自噬的方法

Parisa Koutsifeli, Lorna J Daniels, Joshua P.H. Neale, Sarah Fong, Upasna Varma, Marco Annandale, Xun Li, Yohanes Nursalim, James R Bell, Kate L Weeks, Aleksandr Stotland, David J Taylor, Roberta A Gottlieb, Lea M.D. Delbridge, Kimberley M Mellor
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摘要

糖原自噬("glycogen-autophagy")是一种选择性自噬过程,涉及将糖原运送到溶酶体进行大量降解。糖吞噬蛋白中间体包括作为糖原标记受体的 STBD1,它通过与 Atg8 同源物 GABARAPL1 合作,将糖原货物送入形成中的吞噬体。糖吞噬正在成为能量代谢的一个关键过程,因此开发可靠的糖吞噬活性评估工具是当务之急。在这里,我们发现针对 GABARAPL1 蛋白 N 末端(而非全长蛋白)的抗体能检测到 18kDa 的特异性内源性 GABARAPL1 免疫印迹带。利用稳定的 GFP-GABARAPL1 心脏细胞系,通过测量 GFP 点对巴佛洛霉素溶酶体抑制作用的反应来量化 GABARAPL1 的溶酶体通量。在原代大鼠心室肌细胞中,通过巴佛洛霉素联合氯喹处理后糖原累积的程度来量化内源性糖吞噬通量(单独使用巴佛洛霉素或氯喹均无效果)。在野生型离体小鼠心脏中,单用巴佛洛霉素和巴佛洛霉素联合氯喹(而非单用氯喹)会引起糖原含量的显著增加,这表明糖吞噬通量处于基础状态。总之,这些方法为跟踪心脏噬糖活动提供了一个全面的工具箱,从而推动了对噬糖在健康和疾病中作用的研究。
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Methods for detection of cardiac glycogen-autophagy
Glycogen-autophagy ('glycophagy') is a selective autophagy process involved in delivering glycogen to the lysosome for bulk degradation. Glycophagy protein intermediaries include STBD1 as a glycogen tagging receptor, delivering the glycogen cargo into the forming phagosome by partnering with the Atg8 homolog, GABARAPL1. Glycophagy is emerging as a key process of energy metabolism and development of reliable tools for assessment of glycophagy activity is an important priority. Here we show that antibodies raised against the N terminus of the GABARAPL1 protein (but not the full-length protein) detected a specific endogenous GABARAPL1 immunoblot band at 18kDa. A stable GFP-GABARAPL1 cardiac cell line was used to quantify GABARAPL1 lysosomal flux via measurement of GFP puncta in response to lysosomal inhibition with bafilomycin. Endogenous glycophagy flux was quantified in primary rat ventricular myocytes by the extent of glycogen accumulation with bafilomycin combined with chloroquine treatment (no effect observed with bafilomycin or chloroquine alone). In wild-type isolated mouse hearts, bafilomycin alone and bafilomycin combined with chloroquine (but not chloroquine alone) elicited a significant increase in glycogen content signifying basal glycophagy flux. Collectively, these methodologies provide a comprehensive toolbox for tracking cardiac glycophagy activity to advance research into the role of glycophagy in health and disease.
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