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Amyloid beta 42 peptide (Abeta42)-lowering compounds directly bind to Abeta and interfere with amyloid precursor protein (APP) transmembrane dimerization.β淀粉样蛋白 42 肽(Abeta42)降低化合物直接与 Abeta 结合,并干扰淀粉样前体蛋白(APP)跨膜二聚化。
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本文引用的文献

1
Modulation of gamma-secretase reduces beta-amyloid deposition in a transgenic mouse model of Alzheimer's disease.γ-分泌酶的调制可减少阿尔茨海默病转基因小鼠模型中的β-淀粉样蛋白沉积。
Neuron. 2010 Sep 9;67(5):769-80. doi: 10.1016/j.neuron.2010.08.018.
2
Amyloid beta 42 peptide (Abeta42)-lowering compounds directly bind to Abeta and interfere with amyloid precursor protein (APP) transmembrane dimerization.β淀粉样蛋白 42 肽(Abeta42)降低化合物直接与 Abeta 结合,并干扰淀粉样前体蛋白(APP)跨膜二聚化。
Proc Natl Acad Sci U S A. 2010 Aug 17;107(33):14597-602. doi: 10.1073/pnas.1003026107. Epub 2010 Aug 2.
3
Acute effect on the Aβ isoform pattern in CSF in response to γ-secretase modulator and inhibitor treatment in dogs.γ-分泌酶调节剂和抑制剂治疗犬时对 CSF 中 Aβ 同工型模式的急性影响。
J Alzheimers Dis. 2010;21(3):1005-12. doi: 10.3233/JAD-2010-100573.
4
Beta-amyloid precursor protein mutants respond to gamma-secretase modulators.β-淀粉样前体蛋白突变体对 γ-分泌酶调节剂有反应。
J Biol Chem. 2010 Jun 4;285(23):17798-810. doi: 10.1074/jbc.M110.103283. Epub 2010 Mar 26.
5
Requirement for small side chain residues within the GxGD-motif of presenilin for gamma-secretase substrate cleavage.位于早老素 GxGD 基序中小侧链残基对于 γ-分泌酶底物切割的需求。
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6
Nonspecificity of binding of gamma-secretase modulators to the amyloid precursor protein.γ-分泌酶调节剂与淀粉样前体蛋白结合的非特异性。
Biochemistry. 2009 Dec 22;48(50):11837-9. doi: 10.1021/bi901839d.
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Secretase inhibitors and modulators for Alzheimer's disease treatment.用于治疗阿尔茨海默病的分泌酶抑制剂和调节剂。
Expert Rev Neurother. 2009 May;9(5):661-79. doi: 10.1586/ern.09.24.
8
gamma-Secretase in biology and medicine.生物学与医学中的γ-分泌酶
Semin Cell Dev Biol. 2009 Apr;20(2):219-24. doi: 10.1016/j.semcdb.2008.12.011. Epub 2008 Dec 31.
9
Structure and function of gamma-secretase.γ-分泌酶的结构与功能。
Semin Cell Dev Biol. 2009 Apr;20(2):211-8. doi: 10.1016/j.semcdb.2008.10.007. Epub 2008 Nov 1.
10
Clusters of hyperactive neurons near amyloid plaques in a mouse model of Alzheimer's disease.在阿尔茨海默病小鼠模型中,淀粉样斑块附近的高活性神经元簇。
Science. 2008 Sep 19;321(5896):1686-9. doi: 10.1126/science.1162844.

低效力γ-分泌酶调节剂引起的 Abeta42 反应减弱,可通过第二代化合物克服许多致病性早老素突变体。

Attenuated Abeta42 responses to low potency gamma-secretase modulators can be overcome for many pathogenic presenilin mutants by second-generation compounds.

机构信息

DZNE-German Center for Neurodegenerative Diseases, Ludwig-Maximilians-University, 80336 Munich, Germany.

出版信息

J Biol Chem. 2011 Apr 29;286(17):15240-51. doi: 10.1074/jbc.M110.213587. Epub 2011 Feb 25.

DOI:10.1074/jbc.M110.213587
PMID:21357415
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3083200/
Abstract

Sequential processing of the β-amyloid precursor protein by β- and γ-secretase generates the amyloid β-peptide (Aβ), which is widely believed to play a causative role in Alzheimer disease. Selective lowering of the pathogenic 42-amino acid variant of Aβ by γ-secretase modulators (GSMs) is a promising therapeutic strategy. Here we report that mutations in presenilin (PS), the catalytic subunit of γ-secretase, display differential responses to non-steroidal anti-inflammatory drug (NSAID)-type GSMs and more potent second-generation compounds. Although many pathogenic PS mutations resisted lowering of Aβ(42) generation by the NSAID sulindac sulfide, the potent NSAID-like second-generation compound GSM-1 was capable of lowering Aβ(42) for many but not all mutants. We further found that mutations at homologous positions in PS1 and PS2 can elicit differential Aβ(42) responses to GSM-1, suggesting that a positive GSM-1 response depends on the spatial environment in γ-secretase. The aggressive pathogenic PS1 L166P mutation was one of the few pathogenic mutations that resisted GSM-1, and Leu-166 was identified as a critical residue with respect to the Aβ(42)-lowering response of GSM-1. Finally, we found that GSM-1-responsive and -resistant PS mutants behave very similarly toward other potent second-generation compounds of different structural classes than GSM-1. Taken together, our data show that a positive Aβ(42) response for PS mutants depends both on the particular mutation and the GSM used and that attenuated Aβ(42) responses to low potency GSMs can be overcome for many PS mutants by second generation GSMs.

摘要

β-淀粉样前体蛋白(β-amyloid precursor protein)经β-和γ-分泌酶的顺序加工产生淀粉样β肽(amyloid β-peptide,Aβ),目前普遍认为 Aβ 在阿尔茨海默病(Alzheimer disease)的发病机制中起因果作用。通过γ-分泌酶调节剂(γ-secretase modulators,GSMs)选择性降低致病性 42 个氨基酸变异的 Aβ,是一种很有前途的治疗策略。在这里,我们报告称,早老素(presenilin,PS)突变,即 γ-分泌酶的催化亚基,对非甾体抗炎药(non-steroidal anti-inflammatory drug,NSAID)型 GSM 和更有效的第二代化合物表现出不同的反应。尽管许多致病性 PS 突变抵抗 NSAID 类 GSM 苏林达硫醚降低 Aβ(42)的生成,但强效 NSAID 样第二代化合物 GSM-1 能够降低许多但不是所有突变体的 Aβ(42)。我们进一步发现 PS1 和 PS2 中的同源位置突变可以引起 Aβ(42)对 GSM-1 的不同反应,表明正向的 GSM-1 反应取决于 γ-分泌酶的空间环境。攻击性的致病性 PS1 L166P 突变是少数抵抗 GSM-1 的致病性突变之一,并且发现 Leu-166 是与 GSM-1 降低 Aβ(42)反应相关的关键残基。最后,我们发现,GSM-1 反应性和非反应性 PS 突变体对不同结构类别但与 GSM-1 具有相似作用的其他强效第二代化合物表现出非常相似的行为。总之,我们的数据表明,PS 突变体的正向 Aβ(42)反应既取决于特定的突变,也取决于所使用的 GSM,并且许多 PS 突变体对低效能 GSMs 的 Aβ(42)反应的衰减可以通过第二代 GSM 克服。