首页> 外文期刊>Biochemistry >Structural insights into the ligand binding and releasing mechanism of Antheraea polyphemus pheromone-binding protein 1: Role of the C-terminal tail
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Structural insights into the ligand binding and releasing mechanism of Antheraea polyphemus pheromone-binding protein 1: Role of the C-terminal tail

机译:结构洞察氮素聚合物结合蛋白1的配体结合和释放机制1:C末端尾部的作用

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摘要

Pheromone-binding proteins (PBPs) in lepidopteran moths selectively transport the hydrophobic pheromone molecules across the sensillar lymph to trigger the neuronal response. Moth PBPs are known to bind ligand at physiological pH and release it at acidic pH while undergoing a conformational change. Two molecular switches are considered to play a role in this mechanism: (i) protonation of His~(70) and His~(95) situated at one end of binding pocket and (ii) switch of the unstructured C-terminus at the other end of the binding pocket to a helix that enters the pocket. We have reported previously the role of the histidine-driven switch in ligand release for Antheraea polyphemus PBP1 (ApolPBP1). Here we show that the C-terminus plays a role in the ligand release and binding mechanism of ApolPBP1. The C-terminus truncated mutants of ApolPBP1 (ApolPBP1ΔP129-V142 and ApolPBP1H70A/ H95AΔP129-V142) exist only in the bound conformation at all pH levels, and they fail to undergo pH- or ligand-dependent conformational switching. Although these proteins could bind ligands even at acidic pH unlike wild-type ApolPBP1, they had ~4-fold reduced affinity for the ligand at both acidic and physiological pH compared to that of wild-type ApolPBP1 and ApolPBP1H70A/H95A. Thus, apart from helping in ligand release at acidic pH, the C-terminus in ApolPBP1 also plays an important role in ligand binding and/or locking the ligand in the binding pocket. Our results are in stark contrast to those reported for BmorPBP and AtraPBP, where C-terminus truncated proteins had similar or increased pheromone binding affinity at any pH.
机译:鳞翅目叶片的信息素结合蛋白(PBP)选择性地将疏水信息素分子渗透到感觉淋巴中以引发神经元反应。已知蛾PBPS在生理pH下结合配体并在经历构象变化的同时将其释放在酸性pH下。认为两个分子开关在这种机制中发挥作用:(i)他的〜(70)的质子化和他的〜(95)位于绑定口袋的一端,另一端是另一端的非结构化C末端的开关将装订口的末端到进入口袋的螺旋。我们已经报道了组氨酸驱动开关在配体释放中的角色释放的作用,用于Antheraea poclemus pbp1(apolpbp1)。在这里,我们表明C-末端在APOLPBP1的配体释放和结合机制中起着作用。 APOLPBP1(APOLPBP1ΔP129-V142和APOLPBP1H70A /H95AΔP129-V142)的C-末端截短突变体仅存在于所有pH水平的结合构象中,并且它们不能经历pH-或配体依赖的构象切换。虽然这些蛋白质可以结合配体,即使在酸性pH下与野生型ApolpBP1不同,虽然与野生型Apolpbp1和ApolpBP1H70A / H95A相比,它们对酸性和生理pH的配体具有〜4倍的亲和力。因此,除了在酸性pH下的配体释放之外,ApolpBP1中的C-末端也在配体结合和/或锁定结合口袋中的配体中起重要作用。我们的结果与据报道的BMORPBP和ATRAPBP的结果形成鲜明对比,其中C-末端截短的蛋白质在任何pH下具有相似或增加的信息素结合亲和力。

著录项

  • 来源
    《Biochemistry》 |2013年第6期|共8页
  • 作者单位

    Department of Chemistry and Biochemistry Auburn University Auburn AL 36849 United States;

    Department of Chemistry and Biochemistry Auburn University Auburn AL 36849 United States;

    Department of Chemistry and Biochemistry Auburn University Auburn AL 36849 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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