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WIPI 家族蛋白的自噬功能综合分析及其在 β-三叶状蛋白相关神经退行性疾病发病机制中的意义。

Comprehensive analysis of autophagic functions of WIPI family proteins and their implications for the pathogenesis of β-propeller associated neurodegeneration.

机构信息

Department of Biochemistry and Molecular Biology, Graduate School of Medicine, The University of Tokyo, Tokyo 113-8655, Japan.

Department of Neurology, Graduate School of Medicine, The University of Tokyo, Tokyo 113-8655, Japan.

出版信息

Hum Mol Genet. 2023 Aug 7;32(16):2623-2637. doi: 10.1093/hmg/ddad096.

Abstract

β-propellers that bind polyphosphoinositides (PROPPINs) are an autophagy-related protein family conserved throughout eukaryotes. The PROPPIN family includes Atg18, Atg21 and Hsv2 in yeast and WD-repeat protein interacting with phosphoinositides (WIPI)1-4 in mammals. Mutations in the WIPI genes are associated with human neuronal diseases, including β-propeller associated neurodegeneration (BPAN) caused by mutations in WDR45 (encoding WIPI4). In contrast to yeast PROPPINs, the functions of mammalian WIPI1-WIPI4 have not been systematically investigated. Although the involvement of WIPI2 in autophagy has been clearly shown, the functions of WIPI1, WIPI3 and WIPI4 in autophagy remain poorly understood. In this study, we comprehensively analyzed the roles of WIPI proteins by using WIPI-knockout (single, double and quadruple knockout) HEK293T cells and recently developed HaloTag-based reporters, which enable us to monitor autophagic flux sensitively and quantitatively. We found that WIPI2 was nearly essential for autophagy. Autophagic flux was unaffected or only slightly reduced by single deletion of WIPI3 (encoded by WDR45B) or WIPI4 but was profoundly reduced by double deletion of WIPI3 and WIPI4. Furthermore, we revealed variable effects of BPAN-related missense mutations on the autophagic activity of WIPI4. BPAN is characterized by neurodevelopmental and neurodegenerative abnormalities, and we found a possible association between the magnitude of the defect of the autophagic activity of WIPI4 mutants and the severity of neurodevelopmental symptoms. However, some of the BPAN-related missense mutations, which produce neurodegenerative signs, showed almost normal autophagic activity, suggesting that non-autophagic functions of WIPI4 may be related to neurodegeneration in BPAN.

摘要

β 三叶螺旋桨结构域结合多磷酸肌醇(PROPPINs)是一类在真核生物中高度保守的自噬相关蛋白家族。PROPPIN 家族包括酵母中的 Atg18、Atg21 和 Hsv2,以及哺乳动物中的 WD 重复蛋白与磷酸肌醇相互作用蛋白(WIPI)1-4。WIPI 基因的突变与人类神经疾病有关,包括由 WDR45(编码 WIPI4)突变引起的 β 三叶螺旋桨相关神经退行性变(BPAN)。与酵母 PROPPIN 不同,哺乳动物 WIPI1-WIPI4 的功能尚未得到系统研究。尽管 WIPI2 参与自噬的作用已被明确证实,但 WIPI1、WIPI3 和 WIPI4 在自噬中的功能仍知之甚少。在这项研究中,我们使用 WIPI 敲除(单敲除、双敲除和四敲除)HEK293T 细胞和最近开发的 HaloTag 报告子,全面分析了 WIPI 蛋白的作用,这些报告子使我们能够灵敏和定量地监测自噬流。我们发现 WIPI2 对自噬几乎是必需的。单敲除 WIPI3(由 WDR45B 编码)或 WIPI4 对自噬流没有影响或只有轻微影响,但双敲除 WIPI3 和 WIPI4 则显著降低了自噬流。此外,我们揭示了与 BPAN 相关的错义突变对 WIPI4 自噬活性的不同影响。BPAN 的特征是神经发育和神经退行性异常,我们发现 WIPI4 突变体自噬活性缺陷的程度与神经发育症状的严重程度之间可能存在关联。然而,一些产生神经退行性病变的与 BPAN 相关的错义突变显示出几乎正常的自噬活性,这表明 WIPI4 的非自噬功能可能与 BPAN 中的神经退行性变有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36e0/10407718/b13038232e4c/ddad096f1.jpg

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