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共表达的早老素1 N端片段和C端片段在缺乏全长蛋白的细胞中形成功能性γ-分泌酶复合物。

Co-expressed presenilin 1 NTF and CTF form functional gamma-secretase complexes in cells devoid of full-length protein.

作者信息

Laudon Hanna, Mathews Paul M, Karlström Helena, Bergman Anna, Farmery Mark R, Nixon Ralph A, Winblad Bengt, Gandy Samuel E, Lendahl Urban, Lundkvist Johan, Näslund Jan

机构信息

Karolinska Institutet, Neurotec, Section for Experimental Geriatrics, Novum, Huddinge, Sweden.

出版信息

J Neurochem. 2004 Apr;89(1):44-53. doi: 10.1046/j.1471-4159.2003.02298.x.

Abstract

The enzyme gamma-secretase catalyzes the intramembrane proteolytic cleavage that generates the amyloid beta-peptide from the beta-amyloid precursor protein. The presenilin (PS) protein is one of the four integral membrane protein components of the mature gamma-secretase complex. The PS protein is itself subjected to endoproteolytic processing, generating stable N- and C-terminal fragment (NTF and CTF, respectively) heterodimers. Here we demonstrate that coexpression of PS1 NTF and CTF functionally mimics expression of the full-length PS1 protein and restores gamma-secretase activity in PS-deficient mammalian cells. The coexpressed fragments re-associate with each other inside the cell, where they also interact with nicastrin, another gamma-secretase complex component. Analysis of gamma-secretase activity following the expression of mutant forms of NTF and CTF, under conditions bypassing endoproteolysis, indicated that the putatively catalytic Asp257 and Asp385 residues have a direct effect on gamma-secretase activity. Moreover, we demonstrate that expression of the wild-type CTF rescues endoproteolytic cleavage of C-terminally truncated PS1 molecules that are otherwise uncleaved and inactive. Recovery of cleavage is critically dependent on the integrity of Asp385. Taken together, our findings indicate that ectopically expressed NTF and CTF restore functional gamma-secretase complexes and that the presence of full-length PS1 is not a requirement for proper complex assembly.

摘要

γ-分泌酶催化膜内蛋白水解切割,从β-淀粉样前体蛋白生成β-淀粉样肽。早老素(PS)蛋白是成熟γ-分泌酶复合物的四个整合膜蛋白成分之一。PS蛋白本身会经历内蛋白水解过程,产生稳定且分别为N端和C端片段(分别为NTF和CTF)的异二聚体。在此我们证明,PS1 NTF和CTF的共表达在功能上模拟了全长PS1蛋白的表达,并在PS缺陷的哺乳动物细胞中恢复了γ-分泌酶活性。共表达的片段在细胞内相互重新结合,它们也在细胞内与γ-分泌酶复合物的另一个成分尼卡斯特林相互作用。在绕过内蛋白水解的条件下,对NTF和CTF突变形式表达后的γ-分泌酶活性分析表明,推测具有催化作用的Asp257和Asp385残基对γ-分泌酶活性有直接影响。此外,我们证明野生型CTF的表达挽救了C端截短的PS1分子的内蛋白水解切割,否则这些分子是未切割且无活性的。切割的恢复关键取决于Asp385的完整性。综上所述,我们的研究结果表明,异位表达的NTF和CTF恢复了功能性γ-分泌酶复合物,并且全长PS1的存在并非正确复合物组装的必要条件。

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