Atg39 links and deforms the outer and inner nuclear membranes in selective autophagy of the nucleus

Keisuke Mochida, Toshifumi Otani, Yuto Katsumata, Hiromi Kirisako, Chika Kakuta, T. Kotani, H. Nakatogawa
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引用次数: 16

Abstract

In selective autophagy of the nucleus (hereafter nucleophagy), nucleus-derived double membrane vesicles (NDVs) are formed, sequestered within autophagosomes, and delivered to lysosomes or vacuoles for degradation. In Saccharomyces cerevisiae, the nuclear envelope (NE) protein Atg39 acts as a nucleophagy receptor, which interacts with Atg8 to target NDVs to forming autophagosomal membranes. In this study, we revealed that Atg39 is anchored to the outer nuclear membrane (ONM) via its transmembrane domain and also associated with the inner nuclear membrane (INM) via membrane-binding amphipathic helices (APHs) in its perinuclear space region, thereby linking these membranes. We also revealed that overaccumulation of Atg39 causes the NE to protrude towards the cytoplasm, and the tips of the protrusions are pinched off to generate NDVs. The APHs of Atg39 are crucial for Atg39 assembly in the NE and subsequent NE protrusion. These findings suggest that the nucleophagy receptor Atg39 plays pivotal roles in NE deformation during the generation of NDVs to be degraded by nucleophagy.
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在核的选择性自噬中,Atg39连接并变形核膜的内外膜
在核的选择性自噬(以下简称核自噬)中,形成核源性双膜囊泡(NDVs),将其隔离在自噬体内,并被递送到溶酶体或液泡中降解。在酿酒酵母中,核包膜蛋白Atg39作为核自噬受体,与at8相互作用,靶向NDVs形成自噬体膜。在这项研究中,我们发现Atg39通过其跨膜结构域锚定在外核膜(ONM)上,并通过其核周空间区域的膜结合两亲螺旋(APHs)与内核膜(INM)结合,从而连接这些膜。我们还发现,Atg39的过度积累导致NE向细胞质突出,并且突起的尖端被挤压掉以产生NDVs。Atg39的APHs对于Atg39在NE和随后的NE突出中的组装至关重要。这些发现表明,核自噬受体Atg39在核自噬降解NDVs产生过程中的NE变形中起关键作用。
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