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Anti-peptide antibodies detect steps in a protein conformational change: low-pH activation of the influenza virus hemagglutinin

机译:抗肽抗体可检测蛋白质构象变化的步骤:流感病毒血凝素的低pH活化

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摘要

At low pH, the hemagglutinin (HA) of influenza virus undergoes an irreversible conformational change that potentiates its essential membrane fusion function. We have probed the details of this conformational change using a panel of 14 anti-HA-peptide antibodies. Whereas some antibodies reacted equally well with both the neutral and low-pH HA conformations, others reacted to a significantly greater extent with the low-pH form. The locations of the peptides recognized by the latter antibodies in the three-dimensional HA structure indicated regions of the protein that change in response to low pH. Moreover, kinetic experiments suggested steps in the conformational change. In addition to their relevance to membrane fusion, our results show that anti-peptide antibodies can be used to study some types of biologically important protein conformational changes.
机译:在低pH值下,流感病毒的血凝素(HA)发生不可逆的构象变化,从而增强其基本的膜融合功能。我们使用一组14种抗HA肽抗体探索了这种构象变化的细节。尽管有些抗体与中性和低pH HA构象均反应良好,而另一些抗体与低pH形式的反应却明显更大。后者的抗体在三维HA结构中识别的肽的位置指示了响应低pH值而发生变化的蛋白质区域。此外,动力学实验表明构象变化的步骤。除了与膜融合有关外,我们的研究结果还显示,抗肽抗体可用于研究某些类型的生物学上重要的蛋白质构象变化。

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