拉布
GTP酶
自噬
细胞生物学
生物
粒体自噬
生物化学
细胞凋亡
作者
Pengwei Zhao,Rui Tian,Dandan Song,Qi Zhu,Xianming Ding,Jianqin Zhang,Beibei Cao,Mengyuan Zhang,Yilu Xu,Jie Fang,Jieqiong Tan,Cong Yi,Hongguang Xia,Wei Liu,Wei Zou,Qiming Sun
标识
DOI:10.1083/jcb.202410150
摘要
Selective autophagy plays a crucial role in maintaining cellular homeostasis by specifically targeting unwanted cargo labeled with “autophagy cues” signals for autophagic degradation. In this study, we identify Rab GTPases as a class of such autophagy cues signals involved in selective autophagy. Through biochemical and imaging screens, we reveal that human Rab GTPases are common autophagy substrates. Importantly, we confirm the conservation of Rab GTPase autophagic degradation in different model organisms. Rab GTPases translocate to damaged mitochondria, lipid droplets, and invading Salmonella-containing vacuoles (SCVs) to serve as degradation signals. Furthermore, they facilitate mitophagy, lipophagy, and xenophagy, respectively, by recruiting receptors. This interplay between Rab GTPases and receptors may ensure the de novo synthesis of isolation membranes around Rab-GTPase-labeled cargo, thereby mediating selective autophagy. These processes are further influenced by upstream regulators such as LRRK2, GDIs, and RabGGTase. In conclusion, this study unveils a conserved mechanism involving Rab GTPases as autophagy cues signals and proposes a model for the spatiotemporal control of selective autophagy.
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