Centre for Cancer Cell Reprogramming, Faculty of Medicine, University of Oslo, Montebello, N-0379, Oslo, Norway.
Department of Molecular Cell Biology, Institute for Cancer Research, Oslo University Hospital, Montebello, 0379, Oslo, Norway.
Nat Commun. 2023 Jul 8;14(1):4051. doi: 10.1038/s41467-023-39641-9.
Cellular homeostasis is governed by removal of damaged organelles and protein aggregates by selective autophagy mediated by cargo adaptors such as p62/SQSTM1. Autophagosomes can assemble in specialized cup-shaped regions of the endoplasmic reticulum (ER) known as omegasomes, which are characterized by the presence of the ER protein DFCP1/ZFYVE1. The function of DFCP1 is unknown, as are the mechanisms of omegasome formation and constriction. Here, we demonstrate that DFCP1 is an ATPase that is activated by membrane binding and dimerizes in an ATP-dependent fashion. Whereas depletion of DFCP1 has a minor effect on bulk autophagic flux, DFCP1 is required to maintain the autophagic flux of p62 under both fed and starved conditions, and this is dependent on its ability to bind and hydrolyse ATP. While DFCP1 mutants defective in ATP binding or hydrolysis localize to forming omegasomes, these omegasomes fail to constrict properly in a size-dependent manner. Consequently, the release of nascent autophagosomes from large omegasomes is markedly delayed. While knockout of DFCP1 does not affect bulk autophagy, it inhibits selective autophagy, including aggrephagy, mitophagy and micronucleophagy. We conclude that DFCP1 mediates ATPase-driven constriction of large omegasomes to release autophagosomes for selective autophagy.
细胞内稳态是通过 cargo 衔接蛋白(如 p62/SQSTM1)介导的选择性自噬来实现的,该过程可以清除受损的细胞器和蛋白质聚集体。自噬体可以在称为 omegasomes 的内质网(ER)的特化杯状区域中组装,这些区域的特征是存在 ER 蛋白 DFCP1/ZFYVE1。DFCP1 的功能未知,omegasomes 的形成和收缩机制也未知。在这里,我们证明 DFCP1 是一种 ATP 酶,它通过膜结合而被激活,并以 ATP 依赖的方式二聚化。尽管 DFCP1 的耗竭对 bulk autophagic flux 影响较小,但在喂食和饥饿条件下,DFCP1 都需要维持 p62 的自噬通量,这依赖于其结合和水解 ATP 的能力。虽然缺乏 ATP 结合或水解能力的 DFCP1 突变体定位于正在形成的 omegasomes,但这些 omegasomes 不能以依赖大小的方式正确收缩。因此,新生自噬体从大 omegasomes 中的释放明显延迟。虽然 DFCP1 的敲除不影响 bulk autophagy,但它会抑制选择性自噬,包括 aggrephagy、mitophagy 和 micronucleophagy。我们得出结论,DFCP1 介导 ATPase 驱动的大 omegasomes 收缩,以释放用于选择性自噬的自噬体。