首页> 外文期刊>ACS Omega >Disorder-to-Order Markers of a Cyclic Hexapeptide Inspired from the Binding Site of Fertilin β Involved in Fertilization Process
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Disorder-to-Order Markers of a Cyclic Hexapeptide Inspired from the Binding Site of Fertilin β Involved in Fertilization Process

机译:从受精过程中受铁蛋白β结合位点启发的环六肽的无序标记。

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Synthetic peptides mimicking the binding site of fertilin β to its receptor, integrin α6β1, were shown to inhibit sperm–egg fusion when added to in vitro media. In contrast, the synthetic cyclic hexapeptide, cyclo(Cys1-Ser2-Phe3-Glu4-Glu5-Cys6), named as cFEE, proved to stimulate gamete fusion. Owing to its biological specificity, this hexapeptide could help improve the in vitro fertilization pregnancy rate in human. In an attempt to establish the structure–activity relationship of cFEE, its structural dynamics was herein analyzed by means of ultraviolet circular dichroism (UV-CD) and Raman scattering. The low concentration CD profile in water, containing mainly a deep minimum at ~202 nm, is consistent with a rather unordered chain. However, an ordering trend of the peptide loop has been observed in a less polar solvent such as methanol, where the UV-CD signal shape is formed by a double negative marker at ~202/215 nm, indicating the presence of a type-II′ β-turn. Raman spectra recorded in aqueous samples upon a 100-fold concentration increase, still showed an important population (~30%) of the disordered structure. The structural flexibility of the disulfide bridge was confirmed by the Raman markers arising from the Cys1-Cys6 disulfide bond-stretch motions. Density functional theory calculations highlighted the formation of the type-II′ β-turn on the four central residues of cFEE (i.e., -Ser2-Phe3-Glu4-Glu5-) either with a left- or with a right-handed disulfide. The structure with a left-handed S–S bond, however, appears to be more stable.
机译:当添加到体外培养基中时,合成肽模拟了铁蛋白β与其受体的结合位点整合素α6β1,可抑制精卵融合。相反,被证明为cFEE的合成环状六肽环(Cys1-Ser2-Phe3-Glu4-Glu5-Cys6)可以刺激配子融合。由于其生物特异性,该六肽可以帮助提高人的体外受精怀孕率。为了建立cFEE的构效关系,本文通过紫外圆二色性(UV-CD)和拉曼散射分析了其结构动力学。水中的低浓度CD谱主要在〜202 nm处有一个很深的最小值,这与一条无序链相符。然而,在极性较小的溶剂(如甲醇)中观察到了肽环的有序趋势,其中UV-CD信号形状由〜202/215 nm处的双负标记形成,表明存在II型'β转。浓度增加100倍时,水性样品中记录的拉曼光谱仍然显示出大量的无序结构(约30%)。 Cys1-Cys6二硫键-拉伸运动产生的拉曼标记证实了二硫键的结构柔性。密度泛函理论计算强调了左旋或右旋二硫化物在cFEE的四个中心残基(即-Ser2-Phe3-Glu4-Glu5-)上形成的II'型β-转角。但是,带有左旋S–S键的结构似乎更稳定。

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