首页> 外文期刊>Protein Science: A Publication of the Protein Society >Solution structure of APETx2, a specific peptide inhibitor of ASIC3 proton-gated channels.
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Solution structure of APETx2, a specific peptide inhibitor of ASIC3 proton-gated channels.

机译:APETx2(ASIC3质子门控通道的特定肽抑制剂)的溶液结构。

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摘要

Acid-sensing ion channels (ASIC) are proton-gated sodium channels that have been implicated in pain transduction associated with acidosis in inflamed or ischemic tissues. APETx2, a peptide toxin effector of ASIC3, has been purified from an extract of the sea anemone Anthopleura elegantissima. APETx2 is a 42-amino-acid peptide cross-linked by three disulfide bridges. Its three-dimensional structure, as determined by conventional two-dimensional 1H-NMR, consists of a compact disulfide-bonded core composed of a four-stranded beta-sheet. It belongs to the disulfide-rich all-beta structural family encompassing peptide toxins commonly found in animal venoms. The structural characteristics of APETx2 are compared with that of PcTx1, another effector of ASIC channels but specific to the ASIC1a subtype and to APETx1, a toxin structurally related to APETx2, which targets the HERG potassium channel. Structural comparisons, coupled with the analysis of the electrostatic characteristics of these various ion channel effectors, led us to suggest a putative channel interaction surface for APETx2, encompassing its N terminus together with the type I-beta turn connecting beta-strands III and IV. This basic surface (R31 and R17) is also rich in aromatic residues (Y16, F15, Y32, and F33). An additional region made of the type II'-beta turn connecting beta-strands I and II could also play a role in the specificity observed for these different ion effectors.
机译:酸敏感离子通道(ASIC)是质子门控钠通道,与炎症或缺血性组织酸中毒相关的疼痛传导相关。 APETx2是ASIC3的一种肽毒素效应物,已从海葵Anthopleura Elegantissima的提取物中纯化得到。 APETx2是通过三个二硫键交联的42个氨基酸的肽段。通过常规的二维1H-NMR测定,其三维结构由紧密的二硫键核组成,该核由四链β-折叠构成。它属于富含二硫键的全β结构家族,涵盖了动物毒液中常见的肽毒素。将APETx2的结构特征与ASIC通道的另一种效应子PcTx1进行了比较,但它对ASIC1a亚型和APETx1特异,APETx1在结构上与针对HERG钾通道的APETx2有关。结构上的比较,再加上对这些各种离子通道效应器的静电特性的分析,使我们提出了APETx2的推定通道相互作用表面,包括其N端以及连接β链III和IV的I-beta匝。该基本表面(R31和R17)也富含芳香族残基(Y16,F15,Y32和F33)。由连接β-链I和II的II'-β型转弯制成的其他区域也可能在观察到的这些不同离子效应子的特异性中起作用。

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