C.S.I.C./U.A.M., Instituto De Investigaciones Biomédicas Alberto Sols, Madrid, Spain.
Autophagy. 2022 Mar;18(3):661-677. doi: 10.1080/15548627.2021.1953262. Epub 2021 Jul 27.
PROPPINs are conserved PtdIns3P-binding proteins required for autophagosome biogenesis that fold into a characteristic group of seven-bladed beta-propellers. Mutations in WDR45/WIPI4, a human member of this family, lead to BPAN, a rare form of neurodegeneration. We have generated mutants for the two PROPPIN proteins present in the model system (Atg18 and Wdr45l) and characterized their function. Lack of Wdr45l greatly impairs autophagy, while Atg18 only causes subtle defects in the maturation of autolysosomes. The strong phenotype of the Wdr45l mutant is strikingly similar to that observed in cells lacking Vmp1, an ER protein required for omegasome formation. Common phenotypes include impaired growth in axenic medium, lack of aggregation, and local enrichment of PtdIns3P as determined by the use of lipid reporters. In addition, Vmp1 and Wdr45l mutants show a chronically active response to ER stress. For both mutants, this altered PtdIns3P localization can be prevented by the additional mutation of the upstream regulator Atg1, which also leads to recovery of axenic growth and reduction of ER stress. We propose that, in addition to an autophagy defect, local autophagy-associated PtdIns3P accumulation might contribute to the pathogenesis of BPAN by disrupting ER homeostasis. The introduction of BPAN-associated mutations in Wdr45l reveals the impact of pathogenic residues on the function and localization of the protein.
PROPPINs 是保守的 PtdIns3P 结合蛋白,对于自噬体生物发生是必需的,它们折叠成一组特征性的七叶β-螺旋桨。该家族的人类成员 WDR45/WIPI4 的突变导致 BPAN,这是一种罕见的神经退行性疾病。我们已经生成了模型系统中存在的两种 PROPPIN 蛋白(Atg18 和 Wdr45l)的突变体,并对其功能进行了表征。Wdr45l 的缺乏极大地损害了自噬作用,而 Atg18 仅导致自噬溶酶体成熟的细微缺陷。Wdr45l 突变体的强表型与观察到的缺乏 Vmp1 的细胞非常相似,Vmp1 是形成 omegasome 所必需的内质网蛋白。常见的表型包括在无细胞培养基中生长受损、缺乏聚集以及通过使用脂质报告物确定的 PtdIns3P 的局部富集。此外,Vmp1 和 Wdr45l 突变体显示出对 ER 应激的慢性激活反应。对于这两种突变体,通过额外突变上游调节因子 Atg1 可以防止这种改变的 PtdIns3P 定位,这也导致了在无细胞生长的恢复和 ER 应激的减少。我们提出,除了自噬缺陷之外,局部自噬相关 PtdIns3P 的积累可能通过破坏内质网稳态而导致 BPAN 的发病机制。在 Wdr45l 中引入 BPAN 相关突变揭示了致病残基对蛋白质功能和定位的影响。