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[非蛋白质氨基酸的立体发散合成及生物活性环肽的合成研究]

[Stereo-divergent Synthesis of Nonproteinogenic Amino Acids and Synthetic Study for Biologically Active Cyclopeptides].

作者信息

Ohsawa Kosuke

机构信息

Graduate School of Pharmaceutical Sciences, Tohoku University.

出版信息

Yakugaku Zasshi. 2023;143(7):551-557. doi: 10.1248/yakushi.23-00088.

Abstract

Naturally occurring cyclopeptides are potential middle-molecule drug candidates beyond Lipinski's rule of five. This paper focuses on the structural determination and structure-activity relationship (SAR) study of two cyclopeptides: asperterrestide A and decatransin. The proposed asperterrestide A was synthesized by solution-phase peptide elongation, followed by macrolactamization. NMR analysis and molecular modeling studies revealed the stereochemistry at the two α-positions of amino acid residues as opposite to each other. This was further confirmed by the total synthesis of the revised asperterrestide A. SAR study of synthetic products revealed that the β-hydroxy group in the nonproteinogenic amino acid residue was not essential for its cytotoxicity. In addition, N-alkyl-enriched peptide fragments of decatransin were synthesized in solution-phase without diketopiperadine formation. The putative candidates of decatransin was synthesized by convergent peptide coupling, followed by macrocyclization under modified Mitsunobu conditions. The structure of the natural decatransin, including its absolute configuration, was determined through a comparison of spectral data and the cytotoxicity exhibited by the synthetic products.

摘要

天然存在的环肽是超越Lipinski五规则的潜在中分子药物候选物。本文重点研究了两种环肽——曲霉地肽A和十肽菌素的结构测定及构效关系(SAR)。通过溶液相肽延伸,随后进行大环内酰胺化反应合成了曲霉地肽A。核磁共振分析和分子模拟研究表明,氨基酸残基两个α位的立体化学结构彼此相反。修订后的曲霉地肽A的全合成进一步证实了这一点。合成产物的构效关系研究表明,非蛋白质氨基酸残基中的β-羟基对其细胞毒性并非必不可少。此外,在溶液相中合成了十肽菌素富含N-烷基的肽片段,且未形成二酮哌嗪。通过收敛肽偶联,随后在改良的 Mitsunobu 条件下进行大环化反应,合成了十肽菌素的推定候选物。通过比较光谱数据和合成产物的细胞毒性,确定了天然十肽菌素的结构,包括其绝对构型。

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