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本文引用的文献

1
TgCRND8 amyloid precursor protein transgenic mice exhibit an altered gamma-secretase processing and an aggressive, additive amyloid pathology subject to immunotherapeutic modulation.TgCRND8淀粉样前体蛋白转基因小鼠表现出γ-分泌酶加工过程改变以及侵袭性、累加性淀粉样病理,且该病理可通过免疫治疗进行调节。
Biochemistry. 2007 Sep 11;46(36):10317-27. doi: 10.1021/bi700951u. Epub 2007 Aug 18.
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Presenilin diversifies its portfolio.早老素使其产品组合多样化。
Trends Genet. 2007 Mar;23(3):140-50. doi: 10.1016/j.tig.2007.01.008. Epub 2007 Feb 5.
3
Loss-of-function presenilin mutations in Alzheimer disease. Talking Point on the role of presenilin mutations in Alzheimer disease.阿尔茨海默病中功能丧失性早老素突变。关于早老素突变在阿尔茨海默病中作用的讨论要点。
EMBO Rep. 2007 Feb;8(2):141-6. doi: 10.1038/sj.embor.7400897.
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Key note lecture: toward a mechanistic taxonomy for cell death programs.主题演讲:迈向细胞死亡程序的机制分类法
Stroke. 2007 Feb;38(2 Suppl):652-60. doi: 10.1161/01.STR.0000257802.82826.a7.
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Structures of human insulin-degrading enzyme reveal a new substrate recognition mechanism.人胰岛素降解酶的结构揭示了一种新的底物识别机制。
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High sensitivity analysis of amyloid-beta peptide composition in amyloid deposits from human and PS2APP mouse brain.人源和PS2APP小鼠脑内淀粉样沉积物中β淀粉样肽组成的高灵敏度分析
Neuroscience. 2006 Dec 1;143(2):461-75. doi: 10.1016/j.neuroscience.2006.08.027. Epub 2006 Sep 27.
7
The gamma-secretase complex: membrane-embedded proteolytic ensemble.γ-分泌酶复合物:膜嵌入蛋白水解复合体。
Biochemistry. 2006 Jul 4;45(26):7931-9. doi: 10.1021/bi060799c.
8
Mean age-of-onset of familial alzheimer disease caused by presenilin mutations correlates with both increased Abeta42 and decreased Abeta40.由早老素突变引起的家族性阿尔茨海默病的平均发病年龄与β淀粉样蛋白42增加和β淀粉样蛋白40减少均相关。
Hum Mutat. 2006 Jul;27(7):686-95. doi: 10.1002/humu.20336.
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The involvement of lipid rafts in Alzheimer's disease.脂筏在阿尔茨海默病中的作用
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10
Presenilin clinical mutations can affect gamma-secretase activity by different mechanisms.早老素临床突变可通过不同机制影响γ-分泌酶活性。
J Neurochem. 2006 Feb;96(3):732-42. doi: 10.1111/j.1471-4159.2005.03578.x. Epub 2006 Jan 9.

早老素-1 280位谷氨酸突变为丙氨酸改变了淀粉样前体蛋白(APP)的C端加工过程,产生更长的β淀粉样肽:对阿尔茨海默病的意义。

Presenilin-1 280Glu-->Ala mutation alters C-terminal APP processing yielding longer abeta peptides: implications for Alzheimer's disease.

作者信息

Van Vickle Gregory D, Esh Chera L, Kokjohn Tyler A, Patton R Lyle, Kalback Walter M, Luehrs Dean C, Beach Thomas G, Newel Amanda J, Lopera Francisco, Ghetti Bernardino, Vidal Ruben, Castaño Eduardo M, Roher Alex E

机构信息

The Longtine Center for Molecular Biology and Genetics, Sun Health Research Institute, Sun City, Arizona 85351, USA.

出版信息

Mol Med. 2008 Mar-Apr;14(3-4):184-94. doi: 10.2119/2007-00094.vanvickle.

DOI:10.2119/2007-00094.vanvickle
PMID:18317569
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2258166/
Abstract

Presenilin (PS) mutations enhance the production of the Abeta42 peptide that is derived from the amyloid precursor protein (APP). The pathway(s) by which the Abeta42 species is preferentially produced has not been elucidated, nor is the mechanism by which PS mutations produce early-onset dementia established. Using a combination of histological, immunohistochemical, biochemical, and mass spectrometric methods, we examined the structural and morphological nature of the amyloid species produced in a patient expressing the PS1 280Glu-->Ala familial Alzheimer's disease mutation. Abundant diffuse plaques were observed that exhibited a staining pattern and morphology distinct from previously described PS cases, as well as discreet amyloid plaques within the white matter. In addition to finding increased amounts of CT99 and Abeta42 peptides, our investigation revealed the presence of a complex array of Abeta peptides substantially longer than 42/43 amino acid residue species. The increased hydrophobic nature of longer Abeta species retained within the membrane walls could impact the structure and function of plasma membrane and organelles. These C-terminally longer peptides may, through steric effects, dampen the rate of turnover by critical amyloid degrading enzymes such as neprilysin and insulin degrading enzyme. A complete understanding of the deleterious side effects of membrane bound Abeta as a consequence of gamma-secretase alterations is needed to understand Alzheimer's disease pathophysiology and will aid in the design of therapeutic interventions.

摘要

早老素(PS)突变会增加源自淀粉样前体蛋白(APP)的Aβ42肽的产生。优先产生Aβ42的途径尚未阐明,PS突变导致早发性痴呆的机制也未明确。我们结合组织学、免疫组织化学、生物化学和质谱方法,研究了一名表达PS1 280Glu→Ala家族性阿尔茨海默病突变患者所产生的淀粉样物质的结构和形态性质。观察到大量弥漫性斑块,其染色模式和形态与先前描述的PS病例不同,以及白质内的离散淀粉样斑块。除了发现CT99和Aβ42肽的量增加外,我们的研究还揭示存在一系列比42/43个氨基酸残基物种长得多的复杂Aβ肽。保留在膜壁内的较长Aβ物种增加的疏水性可能会影响质膜和细胞器的结构与功能。这些C末端较长的肽可能通过空间效应,降低诸如中性内肽酶和胰岛素降解酶等关键淀粉样降解酶的周转速率。要了解阿尔茨海默病的病理生理学,需要全面了解γ-分泌酶改变导致的膜结合Aβ的有害副作用,这将有助于设计治疗干预措施。