Detection of ribophagy in yeast and mammals.

Miao Ye, Yuting Chen, Zhaojie Liu, Yigang Wang, Cong Yi
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Abstract

Ribophagy, the cellular process wherein ribosomes are selectively self-digested through autophagy, plays a pivotal role in maintaining ribosome turnover. Understanding the molecular regulatory mechanisms governing ribophagy is pivotal to uncover its significance. Consequently, the establishment of methods for detecting ribophagy becomes important. In this protocol, we have optimized, enriched, and advanced existing ribophagy detection techniques, including immunoblotting, fluorescence microscopy, and transmission electron microscopy (TEM), to precisely monitor and quantify ribophagic events. Particularly noteworthy is the introduction of TEM technology for yeast ribophagy detection. In summary, the delineated methods are applicable for detecting ribophagy in both yeast and mammals, laying a solid foundation for further exploring the physiological importance of ribophagy and its potential implications in diverse cellular environments.

检测酵母和哺乳动物的核吞噬作用
核吞噬是核糖体通过自噬选择性地自我消化的细胞过程,在维持核糖体周转方面发挥着关键作用。了解核吞噬的分子调控机制对揭示其意义至关重要。因此,建立检测核吞噬的方法变得非常重要。在本方案中,我们优化、丰富并推进了现有的核吞噬检测技术,包括免疫印迹、荧光显微镜和透射电子显微镜(TEM),以精确监测和量化核吞噬事件。尤其值得注意的是,TEM 技术被引入到酵母核吞噬检测中。总之,这些方法适用于检测酵母和哺乳动物的核吞噬作用,为进一步探索核吞噬作用的生理重要性及其在不同细胞环境中的潜在影响奠定了坚实的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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