粒体自噬
自噬
细胞生物学
体内
过氧化物酶体
功能(生物学)
生物
模式生物
化学
平衡
基础(医学)
葡萄糖稳态
损失函数
过程(计算)
泛素
动力学(音乐)
内吞作用
作者
Yue Xiong,Weihua Gao,Zelai Wu,Rongbin Ding,Hangbin Ma,Jiahua Zheng,Boran Li,Yongjuan Sang,Lingling Zhang,Weihua Gong,Wei Liu,Xiukui Gao,Qiming Sun
标识
DOI:10.1083/jcb.202503169
摘要
Maintaining peroxisome homeostasis is crucial for cellular function and its disruption links to metabolic and neurodegenerative disorders. We developed PO-TRG mice ubiquitously expressing RFP-GFP-SKL to enable in vivo pexophagy monitoring. The probe was validated through cellular assays, immunostaining, autophagy perturbation, and age-dependent stability assessments. The model revealed tissue-specific basal pexophagy and dynamic changes during development. High-fat diet-induced obesity significantly reduced hepatic pexophagy, demonstrating metabolic sensitivity. Comparative analysis with mitophagy reporters showed both coordinated and distinct spatiotemporal patterns. We also created an inducible model (CA-PO-TRG) that eliminated cardiac artifacts and enabled neuronal analysis. These models provide robust tools for investigating pexophagy in physiological and pathological contexts.
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