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Lysosomal proteolysis and autophagy require presenilin 1 and are disrupted by Alzheimer-related PS1 mutations

机译:溶酶体蛋白水解和自噬需要早老素1,并被阿尔茨海默氏症相关的PS1突变破坏

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摘要

Macroautophagy is a lysosomal degradative pathway essential for neuron survival. Here, we show that macroautophagy requires the Alzheimer's disease (AD)-related protein presenilin-1 (PS1). In PS1 null blastocysts, neurons from mice hypomorphic for PS1 or conditionally depleted of PS1, substrate proteolysis and autophagosome clearance during macroautophagy are prevented as a result of a selective impairment of autolysosome acidification and cathepsin activation. These deficits are caused by failed PS1-dependent targeting of the v-ATPase V0a1 subunit to lysosomes. N-glycosylation of the V0a1 subunit, essential for its efficient ER-to-lysosome delivery, requires the selective binding of PS1 holoprotein to the unglycosylated subunit and the Sec61alpha/oligosaccharyltransferase complex. PS1 mutations causing early-onset AD produce a similar lysosomal/autophagy phenotype in fibroblasts from AD patients. PS1 is therefore essential for v-ATPase targeting to lysosomes, lysosome acidification, and proteolysis during autophagy. Defective lysosomal proteolysis represents a basis for pathogenic protein accumulations and neuronal cell death in AD and suggests previously unidentified therapeutic targets.
机译:巨自噬是神经元生存所必需的溶酶体降解途径。在这里,我们表明,巨噬细胞自噬需要阿尔茨海默氏病(AD)相关蛋白presenilin-1(PS1)。在PS1无效胚泡中,由于自溶酶体酸化和组织蛋白酶激活的选择性损害,可防止来自小鼠的PS1亚型变性或有条件地耗尽PS1的神经元,底物蛋白水解和大自噬过程中自噬体清除。这些缺陷是由v-ATPase V0a1亚基对溶酶体的PS1依赖性靶向失败导致的。 V0a1亚基的N-糖基化对于其有效的ER到溶酶体的传递至关重要,它要求PS1完整蛋白与未糖基化的亚基和Sec61alpha /寡糖基转移酶复合物选择性结合。导致AD早期发作的PS1突变在AD患者的成纤维细胞中产生相似的溶酶体/自噬表型。因此,PS1对于v-ATPase靶向溶酶体,溶酶体酸化和自噬过程中的蛋白水解至关重要。溶酶体蛋白水解缺陷代表AD中致病性蛋白积累和神经元细胞死亡的基础,并提示了以前未知的治疗靶标。

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