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Misrouting of v-ATPase subunit V0a1 dysregulates lysosomal acidification in a neurodegenerative lysosomal storage disease model

机译:在神经退行性溶酶体贮积病模型中v-ATPase亚基V0a1的错误转运调节了溶酶体酸化

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摘要

Defective lysosomal acidification contributes to virtually all lysosomal storage disorders (LSDs) and to common neurodegenerative diseases like Alzheimer's and Parkinson's. Despite its fundamental importance, the mechanism(s) underlying this defect remains unclear. The v-ATPase, a multisubunit protein complex composed of cytosolic V1-sector and lysosomal membrane-anchored V0-sector, regulates lysosomal acidification. Mutations in the CLN1 gene, encoding PPT1, cause a devastating neurodegenerative LSD, INCL. Here we report that in Cln1−/− mice, which mimic INCL, reduced v-ATPase activity correlates with elevated lysosomal pH. Moreover, v-ATPase subunit a1 of the V0 sector (V0a1) requires palmitoylation for interacting with adaptor protein-2 (AP-2) and AP-3, respectively, for trafficking to the lysosomal membrane. Notably, treatment of Cln1−/− mice with a thioesterase (Ppt1)-mimetic, NtBuHA, ameliorated this defect. Our findings reveal an unanticipated role of Cln1 in regulating lysosomal targeting of V0a1 and suggest that varying factors adversely affecting v-ATPase function dysregulate lysosomal acidification in other LSDs and common neurodegenerative diseases.
机译:溶酶体酸化缺陷实际上导致了所有溶酶体贮积病(LSD)以及常见的神经退行性疾病,例如阿尔茨海默氏病和帕金森氏病。尽管具有根本重要性,但仍不清楚导致此缺陷的机制。 v-ATPase是由溶质V1区段和溶酶体膜锚定的V0区段组成的多亚基蛋白复合物,可调节溶酶体酸化。编码PPT1的CLN1基因突变导致毁灭性的神经退行性LSD INCL。在这里,我们报告在模拟INCL的Cln1 -/-小鼠中,降低的v-ATPase活性与溶酶体pH升高有关。此外,V0区段的v-ATPase亚基a1(V0a1)需要棕榈酰化才能分别与衔接蛋白2(AP-2)和AP-3相互作用,以运输到溶酶体膜。值得注意的是,用硫酯酶(Ppt1)模拟物NtBuHA治疗Cln1 -/-小鼠可改善此缺陷。我们的发现揭示了Cln1在调节V0a1的溶酶体靶向中的意想不到的作用,并表明对v-ATPase功能产生不利影响的各种因素在其他LSD和常见的神经退行性疾病中均会调节溶酶体酸化。

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