首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Folding and Assembly of Vanilloid Receptor Secondary-Structure Peptide with Hexahistidine Linker at Nickel-Nitrilotriacetic Acid Monolayer for Capsaicin Recognition
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Folding and Assembly of Vanilloid Receptor Secondary-Structure Peptide with Hexahistidine Linker at Nickel-Nitrilotriacetic Acid Monolayer for Capsaicin Recognition

机译:用六氮酰基丙二酸单层用六三角氨酸接头的六三角素接头折叠和组装用于辣椒素识别

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Herein, we report the self-assembly of a synthetic vanilloid receptor (VR) peptide that selectively binds capsaicin. We synthesized a 26-mer peptide-YSEILFFVQS-HHHHHH-LAMGWTNMLY (S3HS4)-comprising two chemoreceptor domains of transient receptor potential channel (TRPV1) linked by a hexahistidine sequence. High-speed atomic force microscopy (AFM) imaging in water revealed that the peptide structures alternated rapidly between wedge shape and linear forms. Circular dichroism spectroscopy showed that 65% of the amide units in the peptide chain adopted an alpha-helix structure, which was ascribed to the chemoreceptor domains. S3HS4 developed well-packed monolayers at the Ni-treated thiolated nitrilotriacetic acid self-assembled monolayers by chelation of the hexahistidine segment, as characterized by infrared spectroscopy and AFM, which exhibited statistically constant specific height. Therefore, S3HS4 was expected to fold spontaneously upon chelation, and the resulting helix-turn-helix conformers developed films while uniformly oriented: the tilt angle was 69 degrees from the surface normal to the substrate. According to microgravimetric analysis using a quartz crystal microbalance (QCM), the adsorption was 84 +/- 47 pmol cm(-2) (n = 3), which was almost consistent with the saturation adsorption of an alpha-helix unit. We also used a QCM to investigate the host-guest reactions of S3HS4 and found that the S3HS4-attached QCM-chip-bound capsaicin with an apparent binding constant of (4.2 +/- 3.6) x 10(4) M-1 (n = 4), whereas there was no evidence of binding to vanillin or acetophenone. Two controls-a blank chip without S3HS4 and a chip modified with a single helical peptide (LAMGWTNMLY-HHHHHH)-produced no capsaicin response. To the best of our knowledge, S3HS4 is the first example of a synthetic VR mimic peptide. We believe that the present surface-directed structure-based design can be used to exploit the alpha-helix bundle in hexahistidine-linked bishelical peptides.
机译:在此,我们报道了选择性地结合辣椒素的合成香草胆碱受体(VR)肽的自组装。我们合成了26-MER肽-YSEILFFVQS-HHHHHH-LAMGWTNMLY(S3HS4) - 以六三氨基序列连接的瞬态受体电位通道(TRPV1)的两个化学感受器域。在水中成像的高速原子力显微镜(AFM)显影显示肽结构在楔形形状和线性形式之间迅速交替。圆形二色性光谱表明,肽链中65%的酰胺单元采用α-螺旋结构,其归因于化学感受器域。 S3HS4通过红外光谱和AFM的特征在于六三氨基段,在Ni处理的硫醇硝基硝基氨酰基乙酸自组装单层上开发了填充填充的单层,其表现出统计上恒定的特异性高度。因此,预期S3HS4在螯合时被自发地折叠,并且所得到的螺旋转向螺旋聚合物在均匀定向的同时产生薄膜:从正常到衬底的表面倾斜角度为69度。根据使用石英晶体微稳定(QCM)的微血管分析,吸附是84 +/- 47pmol cm(-2)(n = 3),几乎与α-螺旋单元的饱和​​吸附一致。我们还使用了QCM来研究S3HS4的宿主访客反应,发现S3HS4附着的QCM芯片结合的辣椒素(4.2 +/- 3.6)×10(4)m-1(n) = 4),而没有与香草蛋白或苯乙酮结合的证据。两种控制 - 没有S3HS4的空白芯片和用单螺旋肽(Lamgwtnmly-HhHHHH)修饰的芯片 - 发挥辣椒蛋白反应。据我们所知,S3HS4是合成VR模拟肽的第一个例子。我们认为,目前的基于面的基于结构的设计可用于利用六三胺连接的脱毛肽中的α-螺旋束。

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