Additions to Alpha-Sheet Based Hypotheses for the Cause of Alzheimer's Disease.

P. Serwer, E. Wright, Barbara Hunter
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引用次数: 1

Abstract

Protein amyloid-β (Aβ) oligomers with β-sheet-like backbone (β-structured) form extracellular amyloid plaques associated with Alzheimer's disease (AD). However, the relationship to AD is not known. Some investigations suggest that the toxic Aβ component has α-sheet-like backbone (α-structured) subsequently detoxified by intracellular α-to-β conversion before plaque formation. Our objective is to compare this latter hypothesis with observations made by electron microscopy of thin sections of AD-cerebral cortex. We observe irregular, 200-2,000 nm, intracellular, lipofuscin-like inclusions. Some are light-staining and smooth. Others are dark-staining and made granular by fibers that are usually overlapping and are sometimes individually seen. Aspects unusual for lipofuscin include 1) dark and light inclusions interlocking as though previously one inclusion, 2) dark inclusion-contained 2.6 nm thick sub-fibers that are bent as though α-structured, and 3) presence of inclusions in lysosomes and apparent transfer of dark inclusion material to damaged, nearby lysosomal membranes. These data suggest the following additions to α-structure-based hypotheses: 1) Lipofuscin-associated, α-structured protein toxicity to lysosomal membranes is in the chain of AD causation; 2) α-to-β detoxification of α-structured protein occurs in lipofuscin and causes dark-to-light transition that, when incomplete, is the origin of cell-to-cell transmission essential for development of AD.
对阿尔茨海默病病因的基于α表假设的补充。
蛋白淀粉样蛋白-β (Aβ)低聚物具有β-片状骨架(β-结构化)形成与阿尔茨海默病(AD)相关的细胞外淀粉样斑块。然而,与AD的关系尚不清楚。一些研究表明,有毒的Aβ成分具有α-片状骨架(α-结构),随后在斑块形成之前被细胞内α-to-β转化解毒。我们的目的是将后一种假设与电子显微镜对ad大脑皮层薄切片的观察进行比较。我们观察到不规则的,200-2,000 nm,细胞内,脂褐素样包涵体。有些是浅色的,光滑的。另一些是深色的,由纤维组成的颗粒状,通常重叠,有时单独可见。脂褐素不寻常的方面包括:1)深色和浅色内含物互锁,就像以前的一个内含物一样;2)深色内含物含有2.6 nm厚的亚纤维,弯曲,就像α-结构一样;3)溶酶体中存在内含物,深色内含物明显转移到受损的溶酶体膜附近。这些数据为基于α-结构的假设提供了以下补充:1)脂褐素相关的α-结构蛋白对溶酶体膜的毒性是AD致病链中的一个环节;2) α-结构蛋白的α-to-β解毒发生在脂褐素中,并导致从暗到光的转变,当这种转变不完全时,是AD发生所必需的细胞间传递的起源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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