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黄素腺嘌呤二核苷酸(FAD)相关早老素1变体在体内的超积累。

Hyperaccumulation of FAD-linked presenilin 1 variants in vivo.

作者信息

Lee M K, Borchelt D R, Kim G, Thinakaran G, Slunt H H, Ratovitski T, Martin L J, Kittur A, Gandy S, Levey A I, Jenkins N, Copeland N, Price D L, Sisodia S S

机构信息

Department of Pathology, Johns Hopkins School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Nat Med. 1997 Jul;3(7):756-60. doi: 10.1038/nm0797-756.

Abstract

Mutations in the presenilin 1 (PS1) and presenilin 2 (PS2) genes can cause Alzheimer's disease in affected members of the majority of early-onset familial Alzheimer's disease (FAD) pedigrees. PS1 encodes an ubiquitously expressed, eight transmembrane protein. PS1 is endoproteolytically processed to an amino-terminal derivative (approximately 27-28 kDa) and a carboxy-terminal derivative (approximately 17-18 kDa). These polypeptides accumulate to saturable levels in the brains of transgenic mice, independent of the expression of PS1 holoprotein. We now document that, in the brains of transgenic mice, the absolute amounts of accumulated N- and C-terminal derivatives generated from the FAD-linked PS1 variants in which Glu replaces Ala at codon 246 (A246E) or Leu replaces Met at codon 146 (M146L) accumulate to a significantly higher degree (approximately 40-50%) than the fragments derived from wild-type PS1. Moreover, the FAD-linked deltaE9 PS1 variant, a polypeptide that is not subject to endoproteolytic cleavage in vivo, also accumulates in greater amounts than the fragments generated from wild-type human PS1. Thus, the metabolism of PS1 variants linked to FAD is fundamentally different from that of wild-type PS1 in vivo.

摘要

早老素1(PS1)和早老素2(PS2)基因的突变可导致大多数早发性家族性阿尔茨海默病(FAD)家系中的患病成员患阿尔茨海默病。PS1编码一种广泛表达的八次跨膜蛋白。PS1经内蛋白水解加工成一个氨基末端衍生物(约27 - 28 kDa)和一个羧基末端衍生物(约17 - 18 kDa)。这些多肽在转基因小鼠脑中积累到饱和水平,与PS1全蛋白的表达无关。我们现在证明,在转基因小鼠脑中,由FAD相关的PS1变体产生的积累的N端和C端衍生物的绝对量,其中在密码子246处Glu取代Ala(A246E)或在密码子146处Leu取代Met(M146L),其积累程度比源自野生型PS1的片段显著更高(约40 - 50%)。此外,FAD相关的缺失E9 PS1变体,一种在体内不进行内蛋白水解切割的多肽,其积累量也比源自野生型人PS1的片段更多。因此,与FAD相关的PS1变体在体内的代谢与野生型PS1的代谢根本不同。

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