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Protease catalyzed oligopeptide synthesis: Control of composition and end group structure.

机译:蛋白酶催化的寡肽合成:组成和端基结构的控制。

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摘要

This thesis is focused on reverse equilibrium peptide synthesis from amino acid ester derivatives using proteases as the catalyst.;In the first study, one-pot biotransformations gave oligo(gamma-L-Et-Glu) decorated with selected amine-functionalized end-groups at the C-termini. Several proteases were used as catalysts for oligomerization of gamma-L-(Et)2-Glu.HCl in the presence of mono-functional amines. The series of amine nucleophiles (NH2-R, acyl acceptors) studied, mimic phenylalanine in that they possess aromatic rings linked to amine groups by one or more methylenes. Generally, addition of increased quantities of NH2-R from 0 to 30, 50 and 70 mol% with respect to gamma-L-(Et)2-Glu.HCl results in decreased %-yield but increased mol% of NH2-R end-capped oligo(gamma-L-Et-Glu)-NH-R (determined by NMR).;In the second study, composition of co-oligopeptides was varied by changing the feed ratio of L-cysteine-ethyl ester hydrochloride (L-Et-Cys.HCl) and L-glutamic acid di-ethyl ester hydrochloride [gamma-L-(Et)2-Glu.HCl]. Papain catalyzed co-oligomerization, produced oligo-Glu/Cys peptides that have a ∼ 1:1 glutamic acid and cysteine residue content for an average chain length of 9 for a monomer feed ratio of 4:6 (gamma-L-(Et)2-Glu.HCl : L-Et-Cys.HCl). The significance of this composition is highlighted in the sequence homology exhibited by phytochelatins (PC's). PC's are a group of peptides isolated from plant and animal sources responsible for binding to heavy metals thus allowing the plant to accomplish cellular metal homeostasis and detoxification. Characterization of the co-oligopeptide was successfully carried out by 1HNMR and 2D NMR to calculate the DPavg of the co-oligopeptides. MALDI-TOF of the co-oligopeptide further revealed that the distribution of cysteine residues ranged between 2 and 4. Metal binding properties of the co-oligopeptides containing 47% +/- 4% L-Cysteine was investigated by UV-visible spectroscopic analysis which further provided evidence of metal binding.;Thirdly, enzymatic synthesis of oligopeptides from L-phenylalanine ethyl ester hydrochloride (L-Et-Phe.HCl) and other L-form hydrophobic amino acid ester hydrochlorides in water miscible organic co-solvents was studied. The importance of the use of water miscible co-solvents in transforming reactions from heterogeneous to homogeneous conditions as a potent medium engineering tool for protease catalyzed oligopeptide synthesis is highlighted.
机译:本论文的重点是利用蛋白酶作为催化剂,由氨基酸酯衍生物逆向平衡合成肽。在第一项研究中,一锅法生物转化产生了由选定的胺官能化端基修饰的寡聚(γ-L-Et-Glu)。在C总站。在单官能胺的存在下,几种蛋白酶被用作γ-L-(Et)2-Glu.HCl的低聚催化剂。研究了一系列胺亲核试剂(NH2-R,酰基受体),模拟苯丙氨酸,因为它们具有通过一个或多个亚甲基与胺基连接的芳环。通常,相对于γ-L-(Et)2-Glu.HCl,增加量的NH2-R从0到30、50和70 mol%会导致%收率降低,但NH2-R末端的mol%会增加封端的寡(γ-L-Et-Glu)-NH-R(通过NMR测定);在第二项研究中,通过改变L-半胱氨酸-乙酯盐酸盐的进料比来改变共-寡肽的组成-Et-Cys.HCl)和L-谷氨酸二乙酯盐酸盐[γ-L-(Et)2-Glu.HCl]。木瓜蛋白酶催化共寡聚,产生寡聚-Glu / Cys肽,其谷氨酸和半胱氨酸残基含量约为1:1,半胱氨酸残基的平均链长为9,单体进料比为4:6(γ-L-(Et) 2-Glu.HCl:L-Et-Cys.HCl)。在植物螯合肽(PC's)表现出的序列同源性中突出了这种组合物的重要性。 PC是从动植物来源分离的一组肽,负责与重金属结合,从而使植物实现细胞金属稳态和解毒作用。通过1HNMR和2D NMR成功地表征了共寡肽,以计算出共寡肽的DPavg。共寡肽的MALDI-TOF进一步揭示了半胱氨酸残基的分布范围为2至4。通过紫外可见光谱分析研究了含有47%+/- 4%L-半胱氨酸的共寡肽的金属结合特性。第三,研究了在水混溶性有机助溶剂中由L-苯丙氨酸乙酯盐酸盐(L-Et-Phe.HCl)和其他L-形式疏水氨基酸酯盐酸盐酶促合成寡肽。强调了将水混溶助溶剂用于将反应从非均质条件转化为均相条件的重要性,以此作为蛋白酶催化寡肽合成的有效介质工程工具。

著录项

  • 作者

    Viswanathan, Kodandaraman.;

  • 作者单位

    Polytechnic Institute of New York University.;

  • 授予单位 Polytechnic Institute of New York University.;
  • 学科 Chemistry Biochemistry.;Chemistry Organic.;Chemistry Polymer.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 181 p.
  • 总页数 181
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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