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Identification of a tetratricopeptide repeat-like domain in the nicastrin subunit of γ-secretase using synthetic antibodies

机译:使用合成抗体鉴定γ-分泌酶的尼卡斯特林亚基中的四三肽重复序列样结构域

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摘要

The γ-secretase complex, composed of presenilin, anterior-pharynx-defective 1, nicastrin, and presenilin enhancer 2, catalyzes the intra-membranous processing of a wide variety of type I membrane proteins, including amyloid precursor protein (APP) and Notch. Earlier studies have revealed that nicastrin, a type I membrane-anchored glycoprotein, plays a role in γ-secretase assembly and trafficking and has been proposed to bind substrates. To gain more insights regarding nicastrin structure and function, we generated a conformation-specific synthetic antibody and used it as a molecular probe to map functional domains within nicastrin ectodomain. The antibody bound to a conformational epitope within a nicastrin segment encompassing residues 245-630 and inhibited the processing of APP and Notch substrates in in vitro γ-secretase activity assays, suggesting that a functional domain pertinent to γ-secretase activity resides within this region. Epitope mapping and database searches revealed the presence of a structured segment, located downstream of the previously identified DAP domain (DYIGS and geptidase; residues 261-502), that is homologous to a tetratricopeptide repeat (TPR) domain commonly involved in peptide recognition. Mutagen-esis analyses within the predicted TPR-like domain showed that disruption of the signature helical structure resulted in the loss of γ-secretase activity but not the assembly of the γ-secretase and that Leu571 within the TPR-like domain plays an important role in mediating substrate binding. Taken together, these studies offer provocative insights pertaining to the structural basis for nicastrin function as a "substrate receptor" within the γ-secretase complex.
机译:由早老素,前咽缺损1,尼卡斯特林和早老素增强子2组成的γ-分泌酶复合物催化多种I型膜蛋白的膜内加工,包括淀粉样蛋白前体蛋白(APP)和Notch。较早的研究表明,尼卡斯汀(一种I型膜锚定的糖蛋白)在γ-分泌酶的组装和运输中起作用,并已提议与底物结合。为了获得有关尼卡斯汀结构和功能的更多见解,我们生成了构象特异性合成抗体,并将其用作分子探针,以绘制尼卡斯汀胞外域内的功能域。该抗体与包含残基245-630的nicastrin片段内的构象表位结合,并在体外γ分泌酶活性测定中抑制了APP和Notch底物的加工,表明与γ分泌酶活性相关的功能性结构域位于该区域内。表位作图和数据库搜索揭示了一个结构化片段的存在,该片段位于先前鉴定的DAP结构域(DYIGS和肽酶;残基261-502)的下游,与通常参与肽段识别的四肽重复序列(TPR)域同源。预测的TPR样结构域内的诱变分析表明,签名螺旋结构的破坏导致γ分泌酶活性的丧失,但不是γ分泌酶的装配,TPR样结构域内的Leu571发挥了重要作用介导底物结合。综上所述,这些研究提供了关于尼卡斯特林作为γ-分泌酶复合物内“底物受体”功能的结构基础的启发性见解。

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    Departments of Neurobiology and University of Chicago, Chicago, IL 60637;

    Departments of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL 60637;

    Departments of Neurobiology and University of Chicago, Chicago, IL 60637;

    Departments of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL 60637;

    Departments of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL 60637;

    Department of Molecular Pharmacology and Chemistry, Memorial Sloan-Kettering Cancer Center, New York, NY 10065;

    Departments of Genetics and Genomic Sciences and Structural and Chemical Biology, Mount Sinai School of Medicine, New York, NY 10029;

    Departments of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL 60637;

    Department of Molecular Neuroscience, Brain Research Institute, Niigata University,Niigata 951-8585, Japan;

    Departments of Genetics and Genomic Sciences and Structural and Chemical Biology, Mount Sinai School of Medicine, New York, NY 10029;

    Department of Molecular Pharmacology and Chemistry, Memorial Sloan-Kettering Cancer Center, New York, NY 10065;

    Departments of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL 60637;

    Departments of Neurobiology and University of Chicago, Chicago, IL 60637;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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