首页> 外文OA文献 >SYNTHESIS, BIOLOGICAL ACTIVITY AND CONFORMATIONAL ANALYSIS OF FRAGMENT ANALOGUES OF ALPHA-MELANOTROPIN (PEPTIDE, STRUCTURE-FUNCTION, PHENYLGLYCINE, NMR, TETRAHYDROISOQUINOLINE-3-CARBOXYLATE).
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SYNTHESIS, BIOLOGICAL ACTIVITY AND CONFORMATIONAL ANALYSIS OF FRAGMENT ANALOGUES OF ALPHA-MELANOTROPIN (PEPTIDE, STRUCTURE-FUNCTION, PHENYLGLYCINE, NMR, TETRAHYDROISOQUINOLINE-3-CARBOXYLATE).

机译:α-melanotropin(肽,结构功能,苯丙氨酸,NMR,四氢异喹啉-3-羧酸的片段)的类似物的合成,生物活性和构象分析。

摘要

α-MSH (α-melanotropin) is a naturally occurring linear tridecapeptide (Ac-Ser-Tyr-Ser-Met-Glu-His-Phe-Arg-Trp-Gly-Lys-Pro-Val-NH₂) that is primarily known for its ability to stimulate integumental melanocytes and more recently has been implicated in a variety of physiological and neurological processes. It has been shown that substitution of D-phenylalanine in the seven position of this hormone led to an analogue with increased potency and prolonged biological activity. Furthermore, cyclization between the four and ten positions via a cystine bridge led to analogues with enhanced potency. In this regard, a series of conformationally restricted linear and cyclic fragment analogues of α-MSH have been prepared and carefully analyzed by both biological and biophysical methods. Conformational restriction was incorporated in α-MSH fragment analogues, by: (1) substitution of sterically restricted amino acids into the native sequence; or (2) cyclization of the peptide via a disulfide bridge. Due to the biological differences observed for these synthetic α-MSH fragment analogues, a complete conformational analysis by both proton and carbon-13 NMR was performed. The conformational preferences of the backbone were examined by analyzing: (1) the alpha proton chemical shifts; (2) the amide proton chemical shifts; (3) the amide proton coupling constants; and (4) the amide proton temperature dependencies. The data suggests that the peptide backbone in both linear and cyclic analogues possesses a great amount of conformational flexibility with no hydrogen-bonded stabilization. The three-dimensional orientations of individual amino acid side chains have been examined by analyzing: (1) the chemical shifts of the side chain protons; (2) the alpha-beta coupling constants (corresponding rotamer populations); and (3) the carbon-13 spin lattice relaxation times (T₁). A careful examination a the chemical shifts of the side chains of individual amino acids in linear α-MSH fragments reveals that incorporation of an aromatic D-amino acid in the seven position results in an interaction of the side chains of the six, seven and eight positions. In addition, the low carbon-13 spin-lattice relaxation times for the β-carbons of the 5-9 sequence for both Ac-[Nle⁴]-α-MSH₄₋₁₁-NH₂ and Ac-[Nle⁴, D-Phe⁷]-α-MSH₄₋₁₁-NH₂, provides further evidence for an interaction of these side chains. Similar shielding patterns have been observed for the cyclic α-MSH fragment analogues depending upon whether L- or D-phenylalanine is incorporated in the seven position. Considering the differences in biological potency and the similarities in the NMR parameters between the linear and cyclic homologs, it can be concluded that the conformational properties that determine biological potency are too subtle to be measured by present NMR methodology. Furthermore, the similarity of the NMR shielding patterns suggests that a 23-membered ring is too large to impart significant conformational constraints on the peptide backbone or amino acid side chains.
机译:α-MSH(α促黑素)是一种天然存在的线性三肽(Ac-Ser-Tyr-Ser-Met-Glu-His-Phe-Arg-Trp-Gly-Lys-Pro-Val-NH 2)其刺激皮层黑色素细胞的能力,最近已涉及多种生理和神经过程。已经显示在该激素的七个位置上取代D-苯丙氨酸导致具有增强的效力和延长的生物活性的类似物。此外,经由胱氨酸桥在四个和十个位置之间的环化导致具有增强的效力的类似物。在这方面,已经制备了一系列构象受限的α-MSH的线性和环状片段类似物,并通过生物学和生物物理方法进行了仔细分析。通过以下方式将构象限制结合到α-MSH片段类似物中:(1)将空间限制的氨基酸替换为天然序列;或(2)通过二硫键将肽环化。由于观察到这些合成的α-MSH片段类似物的生物学差异,因此通过质子和碳13 NMR进行了完整的构象分析。通过分析检查骨架的构象偏好:(1)α质子化学位移; (2)酰胺质子化学位移; (3)酰胺质子偶联常数; (4)酰胺质子温度依赖性。数据表明,线性和环状类似物中的肽主链都具有大量构象柔性,没有氢键稳定。通过分析分析了单个氨基酸侧链的三维取向:(1)侧链质子的化学位移; (2)α-β耦合常数(对应的旋转异构体数); (3)碳13自旋晶格弛豫时间(T 1)。仔细检查线性α-MSH片段中单个氨基酸的侧链的化学位移后发现,在七个位置掺入芳族D-氨基酸会导致六个,七个和八个侧链相互作用职位。此外,对于Ac- [Nle⁴]-α-MSH₄₋₁₁-NH2和Ac- [Nle⁴,D-Phe⁷]-,5-9序列的β-碳的低碳13自旋晶格弛豫时间α-MSH4 -NH 2为这些侧链的相互作用提供了进一步的证据。对于环状α-MSH片段类似物,已经观察到类似的屏蔽图案,这取决于在七个位置掺入L-或D-苯丙氨酸。考虑到线性和环状同系物之间的生物学效价差异和NMR参数的相似性,可以得出结论,确定生物学效价的构象性质太微妙,无法通过当前的NMR方法进行测量。此外,NMR屏蔽图谱的相似性表明23元环太大而无法在肽主链或氨基酸侧链上赋予明显的构象约束。

著录项

  • 作者

    CODY WAYNE LIVINGSTON.;

  • 作者单位
  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 en
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