首页> 外文期刊>The FASEB Journal >A single-chain variable fragment intrabody prevents intracellular polymerization of Z α 1-antitrypsin while allowing its antiproteinase activity
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A single-chain variable fragment intrabody prevents intracellular polymerization of Z α 1-antitrypsin while allowing its antiproteinase activity

机译:单链可变片段体内体内阻止Z <斜体>α <亚> 1 - 丙烯蛋白的细胞内聚合,同时允许其抗胰酶活性

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Mutant Z α _(1)-antitrypsin (E342K) accumulates as polymers within the endoplasmic reticulum (ER) of hepatocytes predisposing to liver disease, whereas low levels of circulating Z α _(1)-antitrypsin lead to emphysema by loss of inhibition of neutrophil elastase. The ideal therapy should prevent polymer formation while preserving inhibitory activity. Here we used mAb technology to identify interactors with Z α _(1)-antitrypsin that comply with both requirements. We report the generation of an mAb (4B12) that blocked α _(1)-antitrypsin polymerization in vitro at a 1:1 molar ratio, causing a small increase of the stoichiometry of inhibition for neutrophil elastase. A single-chain variable fragment (scFv) intrabody was generated based on the sequence of mAb4B12. The expression of scFv4B12 within the ER (scFv4B12_(KDEL)) and along the secretory pathway (scFv4B12) reduced the intracellular polymerization of Z α _(1)-antitrypsin by 60%. The scFv4B12 intrabody also increased the secretion of Z α _(1)-antitrypsin that retained inhibitory activity against neutrophil elastase. MAb4B12 recognized a discontinuous epitope probably located in the region of helices A/C/G/H/I and seems to act by altering protein dynamics rather than binding preferentially to the native state. This novel approach could reveal new target sites for small-molecule intervention that may block the transition to aberrant polymers without compromising the inhibitory activity of Z α _(1)-antitrypsin.—Ordó?ez, A., Pérez, J., Tan, L., Dickens, J. A., Motamedi-Shad, N., Irving, J. A., Haq, I., Ekeowa, U., Marciniak, S. J., Miranda, E., Lomas, D. A. A single-chain variable fragment intrabody prevents intracellular polymerization of Z α _(1)-antitrypsin while allowing its antiproteinase activity.
机译:突变体Zα_(1) - 丙烯蛋白(E342K)作为肝细胞的内质网(ER)内的聚合物累积,而循环Zα_(1)的低水平通过抑制抑制而导致肺气肿中性粒细胞弹性蛋白酶。理想的疗法应防止聚合物形成,同时保持抑制活性。在这里,我们使用MAB技术识别具有Zα_(1) - antiTrypsin的交互式,符合这两个要求。我们报告了在1:1摩尔比下体外阻断α_(1) - 丙烯酸素聚合的mAb(4b12)的产生,导致抑制中性粒细胞弹性蛋白酶酶的抑制化学计量的小。基于MAB4B12的序列生成单链可变片段(SCFV)体内体。 SCFV4b12在ER(SCFV4b12_(kdel))和分泌途径(SCFV4b12)中的表达将Zα_(1) - 丙烯蛋白的细胞内聚合降低60%。 SCFV4B12体内体还增加了Zα_(1) - 丙烯蛋白的分泌,其保留对嗜中性粒细胞弹性蛋白酶的抑制活性。 MAB4B12认识到可能位于螺旋A / C / G / H / I区域中的不连续表位,似乎通过改变蛋白质动态而不是优先与原生状态结合起作用。这种新方法可以揭示用于小分子干预的新靶位点,其可以阻断到异常聚合物的过渡而不损害zα_(1) - antiTirypsin.-ordó?EZ,A.,Pérez,J.,Tan的抑制活性,L.,Dickens,Ja,Motiamei-Shad,N.,Irving,JA,Haq,I.,Ekeowa,U.,Marciniak,SJ,Miranda,E.,Lomas,Da单链可变片段体内植入植物Zα_(1) - 丙烯酸的聚合同时允许其抗滴定蛋白酶活性。

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