首页> 外文学位 >Synthesis of the chiral pentadentate oxoferryl complex and its function in the enantioselective oxidation of peptides and the synthesis and characterization of the chiral cobalt(III) complex.
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Synthesis of the chiral pentadentate oxoferryl complex and its function in the enantioselective oxidation of peptides and the synthesis and characterization of the chiral cobalt(III) complex.

机译:手性五齿草酸酯配合物的合成及其在肽的对映选择性氧化中的作用以及手性钴(III)配合物的合成和表征。

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摘要

The development of a catalyst that enantioselectively attacks peptides derived from D-amino acids at a faster rate than those derived from L-amino acids is unknown. As previously mentioned, D-amino acids are the key components of the bacterial cell wall. Due to the fact that bacteria use D-amino acids in peptides, specifically in the peptidoglycan of their cell walls, and mammals do not, this methodology represents a potentially novel mode of action for antibiotics.;R-CDPy3 complex was synthesized in order to mimic the activity of N4Py and especially Bn-TPEN (due to its structural similarity) in the cleavage of peptides. Two derivatives of the R-CDPy3 (R = Me, Et) ligand were prepared by inserting the methyl and ethyl groups instead of the benzyl which generate a less sterically hindered ligand. These two new ligands were successful in generating the FeII and the FeIVO complexes. These iron-based catalysts will be tested toward the oxidative cleavage of the backbone of amino acids and peptides.;On the other hand, we have generated a new CoIII complex derived from Bn-CDPy3. Interestingly, only one coordination geometry out of five possible modes of coordination was favored.
机译:还不知道能以比来自L-氨基酸的肽更快的速率对映选择性攻击来自D-氨基酸的肽的催化剂的开发。如前所述,D-氨基酸是细菌细胞壁的关键成分。由于细菌在肽中(特别是在其细胞壁的肽聚糖中)使用D-氨基酸,而哺乳动物则不使用D-氨基酸,因此该方法代表了一种潜在的新型抗生素作用方式。合成了R-CDPy3复合物模拟N4Py的活性,尤其是Bn-TPEN在肽切割中的活性(由于其结构相似性)。 R-CDPy3(R = Me,Et)配体的两种衍生物是通过插入甲基和乙基而不是苄基来制备的,而苄基会产生较少空间位阻的配体。这两个新的配体成功生成了FeII和FeIVO配合物。这些铁基催化剂将对氨基酸和多肽骨架的氧化裂解进行测试。另一方面,我们已经生成了一种新的源自Bn-CDPy3的CoIII配合物。有趣的是,只支持五种可能的协调模式中的一种协调几何。

著录项

  • 作者

    Hammoud, Mirvat.;

  • 作者单位

    Wayne State University.;

  • 授予单位 Wayne State University.;
  • 学科 Chemistry Organic.
  • 学位 M.S.
  • 年度 2009
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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