过氧化物酶体
过氧化物酶体靶向信号
拟南芥
生物
细胞生物学
生物化学
胞浆
蛋白酶体
蛋白质降解
泛素
蛋白质靶向
细胞器
功能(生物学)
微体
突变体
转运蛋白
乙醛小体
过氧化物酶体障碍
膜蛋白
拟南芥
泛素连接酶
亚细胞定位
AAA蛋白
分解代谢
光呼吸
线粒体
过氧化物酶体增殖物激活受体α
泽尔韦格综合征
蛋白质聚集
受体
作者
Jinge Li,Shijiao Yu,Xiaoxiao Zang,Shuo Wang,Zhaoxia Qin,Changle Ma
标识
DOI:10.1093/plcell/koag149
摘要
Homeostasis of peroxisomes and their constituents maintains peroxisome function during plant growth, development, and environmental responses. Protein degradation maintains peroxisome homeostasis by eliminating misfolded or damaged proteins and precisely regulating the abundance of specific proteins. However, the mechanism by which a subset of peroxisomal proteins is transported from the peroxisome to the proteasome for degradation remains unclear. Here, we show that CELL DIVISION CONTROL PROTEIN 48 HOMOLOG A (CDC48A) and its cofactor, the plant UBX-domain containing (PUX) protein PUX10, play a critical role in the degradation of certain peroxisomal proteins in Arabidopsis thaliana. The inducible expression of a CDC48A dominant-negative mutant (CDC48A-DN) or a deficiency of PUX10 (pux10 mutant) caused the accumulation of ubiquitinated proteins and defective degradation of peroxisomal proteins, including the peroxin (PEX) PEX5, a receptor responsible for cytosolic cargo delivery to the peroxisomal matrix, and the peroxisomal matrix protein CATALASE3 (CAT3). We further reveal that PUX10 is an integral peroxisomal membrane protein that interacts with PEX5 and CAT3 via its UBA domain. Functional analysis demonstrates that CDC48A is required for peroxisomal metabolism and abundance, whereas loss of PUX10 only affects peroxisome abundance. Overall, these findings establish that the CDC48A-PUX10 complex is a key component in the ubiquitin-dependent peroxisome-associated degradation machinery, which governs the turnover of a subset of peroxisomal proteins.
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