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Solution state structures of human pancreatic amylin and pramlintide

机译:人胰胰岛淀粉样多肽和普兰林肽的溶液状态结构

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摘要

We have employed pramlintide (prAM) as a surrogate for hAM in CD and NMR studies of the conformational preferences of the N-terminal portion of the structure in media which do not provide long-lived monomeric solutions of hAM due to its rapid conversion to preamyloid β aggregate states. Direct comparison of hAM and prAM could be made under helix-formation-favoring conditions. On the basis of CD and NMR studies: (i) the Cys2–Cys7 loop conformation has a short-span of helix (Ala5–Cys7); (ii) the extent to which this helix propagates further into the sequence is medium-dependent; a helix from Ala5 through Ser20 (with end fraying from His18 onward) is observed in aqueous fluoroalcohol media; (iii) in 12+ vol.% HFIP, the amyloidogenic region of hAM forms a second helical domain (Phe23–Ser29); (iv) the two helical regions of hAM do not have any specific geometric relationship as they are connected by a flexible loop that takes different conformations and (v) although the extreme C-terminus is essential for bioactivity, it is found to be extensively randomized with conformer interconversions occurring at a much faster rate than that is observed in the remainder of the peptide sequence. Two NMR-derived structures of the 1–22 sequence fragment of hAM have been derived. The work also serves to illustrate improved methods for the NMR characterization of helices. A detailed quantitative analysis of the NOE intensities observed in aqueous HFIP revealed alternative conformations in the C-terminal portion of the common amylin helix, a region that is known to be involved in the biorecognition phenomena leading to amyloidogenesis. Even though the SNN sequence appears to be a flexible loop, the chemical shifts (and changes induced upon helix structuring) suggest some interactions between the loop and the amyloidogenic segment of hAM that occur on partial helix formation.
机译:我们已使用普兰林肽(prAM)作为CD和NMR研究中hAM的替代品,用于研究介质中结构N端部分的构象偏好,该介质由于hAM迅速转化为淀粉样蛋白而无法提供hAM的长期单体溶液β聚集态。 hAM和prAM的直接比较可以在有利于螺旋形成的条件下进行。在CD和NMR研究的基础上:(i)Cys2-Cys7环构象具有短跨度的螺旋(Ala5-Cys7); (ii)该螺旋进一步传播到序列中的程度是介质依赖性的;在氟代醇水溶液中观察到了从Ala5到Ser20的螺旋(末端从His18开始磨损); (iii)在12%vol%的HFIP中,hAM的淀粉样蛋白形成区域形成第二个螺旋结构域(Phe23–Ser29); (iv)hAM的两个螺旋区域没有任何特定的几何关系,因为它们通过具有不同构象的柔性环连接,并且(v)尽管极端的C端对于生物活性至关重要,但发现它是广泛随机的构象体相互转化的发生率比在肽序列其余部分中观察到的快得多。 hAM的1–22序列片段的两个NMR衍生结构已得到推导。这项工作还有助于说明对螺旋进行NMR表征的改进方法。 HFIP水溶液中观察到的NOE强度的详细定量分析揭示了常见胰岛淀粉样螺旋线C末端部分的其他构象,该区域已知参与导致淀粉样蛋白形成的生物识别现象。尽管SNN序列似乎是一个柔性环,但化学位移(以及螺旋结构诱导的变化)表明,该环与hAM的淀粉样生成部分之间发生了部分螺旋形成过程。

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