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An insight into asymmetric synthesis and bioorganic applications of novel Calpha-methyl-lysine, -proline, -nipecotic acid analogues.

机译:深入了解新型Calpha-甲基赖氨酸,-脯氨酸,-哌尼克酸类似物的不对称合成和生物有机应用。

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摘要

Prochiral malonic diesters consisting of a quaternary carbon center have been successfully converted into a different set of tBoc-Fmoc-alpha 2,2-methyllysine-OH analogues through chiral malonic half-ester intermediates achieved via enzymatic (Pig Liver Esterase, PLE) hydrolysis. The selection of chiral half-ester intermediates, which vary from 1 to 6 methylene units in the side chain, are achieved in high optical purity (92% - 97% ee) and in good yields (65% - 72%). The PLE hydrolysis of malonic diesters with a variety of side chain lengths observed to obey the Jones's PLE model as evidenced from the stereochemical configurations of the resulting chiral half-esters. The optimized synthetic strategy allows the construction of both enantiomers of alpha2,2-methyllysine analogues, and a ( S)-beta2,2-methyllysine analogue from a common synthon by straightforward exploitation of protecting groups. Two different straightforward synthetic strategies are illustrated for the synthesis of alpha2,2 -methyllysine analogues. The described strategies should find significant usefulness in preparing novel peptide libraries with unnatural lysine analogues. A Vapreotide analogue incorporating (S)-alpha2,2 -methyllysine was constructed. However, the Vapreotide analogue with (S)-alpha-methyl-alpha-lysine is found to lose its specific binding to somatostatin receptor subtype 2 (SSTR2). In an additional project, a stereoselective and enantiodivergent cyclization strategy for the preparation of gamma/delta-lactams is exhibited. The cyclization strategy exploits chiral malonic esters prepared from enantiomerically enriched (92% ee - 97% ee) mono esters of disubstituted malonic acid. The cyclization takes place with the selective departure of a substituted benzyl alcohol as the leaving group. A Hammett study demonstrates that the cyclization is under electronic control. The resulting gamma/delta-lactam was readily converted into a novel proline/nipecotic acid analogue.
机译:由季碳中心组成的手性丙二酸二酯已通过手性丙二酸半酯中间体成功地转化为另一组tBoc-Fmoc-alpha 2,2-甲基赖氨酸-OH类似物,该中间体是通过酶促(猪肝酯酶,PLE)水解而获得的。在侧链中从1到6个亚甲基单元不等的手性半酯中间体的选择可以实现高光学纯度(92%-97%ee)和良好的收率(65%-72%)。由所得手性半酯的立体化学构型证明,具有各种侧链长度的丙二酸二酯的PLE水解遵循Jones的PLE模型。优化的合成策略允许通过直接利用保护基团从普通的合成子构建α2,2-甲基赖氨酸类似物和(S)-β2,2-甲基赖氨酸类似物的对映体。说明了两种不同的直接合成策略,用于合成α2,2-甲基赖氨酸类似物。所描述的策略应在用非天然赖氨酸类似物制备新型肽文库中发现重大有用性。构建了掺入(S)-α2,2-甲基赖氨酸的Vapreotide类似物。但是,发现具有(S)-α-甲基-α-赖氨酸的Vapreotide类似物失去了与生长抑素受体亚型2(SSTR2)的特异性结合。在另一个项目中,展示了用于制备γ/δ-内酰胺的立体选择性和对映异构环化策略。环化策略利用由对映异构体富集的(92%ee-97%ee)二取代丙二酸单酯制备的手性丙二酸酯。环化反应是通过选择性取代取代的苯甲醇作为离去基团进行的。 Hammett的研究表明环化是在电子控制下进行的。所得的γ/δ-内酰胺易于转化为新型的脯氨酸/庚酸类似物。

著录项

  • 作者

    Banerjee, Souvik.;

  • 作者单位

    The University of Southern Mississippi.;

  • 授予单位 The University of Southern Mississippi.;
  • 学科 Chemistry General.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 229 p.
  • 总页数 229
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:47

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