首页> 美国卫生研究院文献>Biochemical Journal >High-level expression and in vitro mutagenesis of a fibrillogenic 109-amino-acid C-terminal fragment of Alzheimers-disease amyloid precursor protein.
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High-level expression and in vitro mutagenesis of a fibrillogenic 109-amino-acid C-terminal fragment of Alzheimers-disease amyloid precursor protein.

机译:阿尔茨海默氏病淀粉样蛋白前体蛋白的原纤维形成的109个氨基酸的C端片段的高水平表达和体外诱变。

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摘要

We amplified DNA encoding the 3' 109 codons of Alzheimer's-disease amyloid precursor protein (APP) inclusive of the beta protein (A beta) and cytoplasmic domains from cDNA using oligonucleotide primers designed to facilitate cloning into the T7 expression vector pT7Ad23K13. We also modified this construct to generate recombinant molecules incorporating two recently described APP mutants by site-directed mutagenesis. Both native C109 (deletion construct inclusive of the C-terminal 109 residues of APP) and constructs with a single mutation at codon 642 (T-->G, resulting in a substitution of glycine for valine) or a double mutation at codons 595 (G-->T, substituting asparagine for lysine) and 596 (A-->C, substituting leucine for methionine) were expressed in Escherichia coli to levels of 5-20% of total bacterial protein after induction. The major constituent of expressed C109 protein had an apparent molecular mass of 16-18 kDa by SDS/PAGE and appeared to be the full-length construct by size and N-terminal microsequencing. Also present was a 4-5 kDa species that co-purified with C109, constituting only approximately 1% of expressed protein, which was revealed by Western-blot analysis with antibodies specific for A beta epitopes and after biotinylation of purified recombinant C109. This fragment shared N-terminal sequence with, and appeared to arise by proteolysis of, full-length C109 in biosynthetic labelling experiments. C109 spontaneously precipitated after dialysis against NaCl or water, and with prolonged (> 20 weeks) standing was found by electron microscopy to contain a minor (< 5%) fibrillar component that was reactive with antibodies to a C-terminal epitope of APP. Recombinant C109 appears to duplicate some of the biochemical and physicochemical properties of C-terminal A beta-inclusive fragments of APP that have been found in transfected cells, brain cortex and cerebral microvessels.
机译:我们使用旨在促进克隆到T7表达载体pT7Ad23K13的寡核苷酸引物,从cDNA扩增了编码阿尔茨海默氏病淀粉样蛋白前体蛋白(APP)的3'109个密码子的DNA,包括β蛋白(A beta)和胞质域。我们还修饰了该构建体,以通过定点诱变产生结合了两个最近描述的APP突变体的重组分子。天然C109(包含APP的C端109个残基的缺失构建体)和在642位密码子处具有单一突变(T-> G,导致缬氨酸被甘氨酸取代)或在595位密码子处具有双重突变(诱导后,G-> T(用天冬酰胺代替赖氨酸)和596(A-> C,用亮氨酸代替蛋氨酸)在大肠杆菌中表达至细菌总蛋白的5-20%。通过SDS / PAGE,表达的C109蛋白的主要成分具有16-18kDa的表观分子量,并且通过大小和N-末端微测序看来是全长构建体。还存在与C109共纯化的4-5 kDa物种,仅构成表达蛋白质的约1%,这是通过对Aβ表位具有特异性的抗体进行的蛋白质印迹分析以及纯化的重组C109的生物素化后揭示的。在生物合成标记实验中,此片段与全长C109共享N端序列,并且似乎是由蛋白水解产生的。在用NaCl或水透析后,C109会自发沉淀,并且经长时间(> 20周)静置后,通过电子显微镜发现其含有少量(<5%)的原纤维成分,该成分可与针对APP C端表位的抗体发生反应。重组C109似乎复制了在转染的细胞,大脑皮层和大脑微血管中发现的APP的C端Aβ内含片段的一些生化和物理化学特性。

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