Department of Pathology and Laboratory Medicine, Indiana University School of Medicine, Indianapolis, IN, USA.
Autophagy. 2012 Mar;8(3):401-12. doi: 10.4161/auto.18777. Epub 2012 Feb 3.
Atg4 is required for cleaving Atg8, allowing it to be conjugated to phosphatidylethanolamine on phagophore membranes, a key step in autophagosome biogenesis. Deconjugation of Atg8 from autophagosomal membranes could be also a regulatory step in controlling autophagy. Therefore, the activity of Atg4 is important for autophagy and could be a target for therapeutic intervention. In this study, a sensitive and specific method to measure the activity of two Atg4 homologs in mammalian cells, Atg4A and Atg4B, was developed using a fluorescence resonance energy transfer (FRET)-based approach. Thus LC3B and GATE-16, two substrates that could be differentially cleaved by Atg4A and Atg4B, were fused with CFP and YFP at the N- and C-terminus, respectively, allowing FRET to occur. The FRET signals decreased in proportion to the Atg4-mediated cleavage, which separated the two fluorescent proteins. This method is highly efficient for measuring the enzymatic activity and kinetics of Atg4A and Atg4B under in vitro conditions. Applications of the assay indicated that the activity of Atg4B was dependent on its catalytic cysteine and expression level, but showed little changes under several common autophagy conditions. In addition, the assays displayed excellent performance in high throughput format and are suitable for screening and analysis of potential modulators. In summary, the FRET-based assay is simple and easy to use, is sensitive and specific, and is suitable for both routine measurement of Atg4 activity and high-throughput screening.
Atg4 对于切割 Atg8 是必需的,使它能够连接到吞噬体膜上的磷脂乙醇胺上,这是自噬体生物发生的关键步骤。Atg8 从自噬体膜上的去共轭也可以是控制自噬的调节步骤。因此,Atg4 的活性对自噬很重要,并且可能是治疗干预的靶标。在这项研究中,开发了一种使用荧光共振能量转移 (FRET) 为基础的方法来测量哺乳动物细胞中两种 Atg4 同源物 Atg4A 和 Atg4B 的活性的敏感和特异性方法。因此,LC3B 和 GATE-16 这两种可以分别被 Atg4A 和 Atg4B 切割的底物,在 N 和 C 末端分别与 CFP 和 YFP 融合,允许发生 FRET。FRET 信号与 Atg4 介导的切割成比例地减少,这将两种荧光蛋白分离。该方法在体外条件下对 Atg4A 和 Atg4B 的酶活性和动力学进行测量非常有效。该测定法的应用表明,Atg4B 的活性依赖于其催化半胱氨酸和表达水平,但在几种常见的自噬条件下变化不大。此外,该测定法在高通量格式下显示出优异的性能,并且适用于潜在调节剂的筛选和分析。总之,基于 FRET 的测定法简单易用,具有灵敏性和特异性,既适合常规测量 Atg4 活性,也适合高通量筛选。