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首页> 外文期刊>Protein Science: A Publication of the Protein Society >pH effects on binding between the anthrax protective antigen and the host cellular receptor CMG2
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pH effects on binding between the anthrax protective antigen and the host cellular receptor CMG2

机译:pH对炭疽保护性抗原与宿主细胞受体CMG2结合的影响

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摘要

The anthrax protective antigen (PA) binds to the host cellular receptor capillary morphogenesis protein 2 (CMG2) with high affinity. To gain a better understanding of how pH may affect binding to the receptor, we have investigated the kinetics of binding as a function of pH to the full-length monomeric PA and to two variants: a 2-fluorohistidine-labeled PA (2-FHisPA), which is ~1 pH unit more stable to variations in pH than WT, and an ~1 pH unit less stable variant in which Trp346 in the domain 2β 3-2β 4 loop is substituted with a Phe (W346F). We show using stopped-flow fluorescence that the binding rate increases as the pH is lowered for all proteins, with little influence on the rate of dissociation. In addition, we have crystallized PA and the two variants and examine the influence of pH on structure. In contrast to previous X-ray studies, the domain 2β 3- 2β 4 loop undergoes little change in structure from pH ~8 to 5.5 for the WT protein, but for the 2-FHis labeled and W346F mutant there are changes in structure consistent with previous X-ray studies. In accord with pH stability studies, we find that the average B-factor values increase by ~20-30% for all three proteins at low pH. Our results suggest that for the full-length PA, low pH increases the binding affinity, likely through a change in structure that favors a more "bound-like"conformation. Published by Wiley-Blackwell.
机译:炭疽保护抗原(PA)以高亲和力与宿主细胞受体毛细血管形态发生蛋白2(CMG2)结合。为了更好地了解pH值如何影响与受体的结合,我们研究了与pH结合的动力学,它与全长单体PA和两个变体有关:2-氟组氨酸标记的PA(2-FHisPA ),它对pH的变化比WT稳定约1个pH单位,而在域2β3-2β4环中的Trp346被Phe(W346F)取代的pH较不稳定的〜1个pH单位。我们显示使用停止流荧光,结合率随着所有蛋白质的pH降低而增加,而对解离速率的影响很小。此外,我们已经结晶了PA和两个变体,并研究了pH对结构的影响。与先前的X射线研究相反,WT蛋白的结构域2β3-2β4环在pH〜8至5.5范围内几乎没有结构变化,但是对于2-FHis标记的和W346F突变体,结构变化与先前的X射线研究。根据pH稳定性研究,我们发现在低pH下,所有三种蛋白质的平均B因子值均增加了约20-30%。我们的结果表明,对于全长PA,低pH值可能通过有利于“结合样”构象的结构变化来提高结合亲和力。由Wiley-Blackwell发布。

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