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Synthesis, characterization, and catalytic activity of de novo designed metalloproteins.

机译:从头设计的金属蛋白的合成,表征和催化活性。

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摘要

This thesis describes the design and synthesis of a four-helix protein capable of binding a catalytically active transition metal complex via phosphite ligation. We developed a novel in situ method for the phosphite-modification of de novo designed synthetic proteins and native proteins. Using this method cytochrome b562, a natural protein with surface tyrosine residues, was easily modified as its phosphite. A synthetic protein (Yc-27)4 was designed with tyrosine residues that were modified into phosphites. The phosphite-modified protein (Yc-27-DEP) 4 has tyrosine residues in appropriate positions for metal ligation. Another four-helix protein (Yc-26)4 with tyrosine residues was also synthesized and modified as its phosphite (Yc-26-DEP)4. Both (Yc-27-DEP)4 and (Yc-26-DEP)4 were reacted with the catalytically active rhodium complex RhClPPh3 to form the metalloproteins (Yc-27-DEP)4-Rh and (Yc-26-DEP)4-Rh respectively. These metalloproteins were tested for catalytic activity in the hydrogenation of small olefins. The metalloprotein, (Yc-26-DEP)4-Rh, was found to catalyze the hydrogenation of olefins such as cyclohexene, alpha-methylstyrene, and (R)-carvone. The hydrogenation of the chiral (R)-carvone using (Yc-26-DEP) 4-Rh demonstrated that the metalloprotein is more reactive than Wilkinson's catalyst. However, the hydrogenation of the ring unsaturation in (R)-carvone by the metalloprotein indicated that it is less regioselective than Wilkinson's catalyst.
机译:本论文描述了一种四螺旋蛋白的设计和合成,该蛋白能够通过亚磷酸酯连接而结合催化活性过渡金属配合物。我们为从头设计的合成蛋白和天然蛋白的亚磷酸酯修饰开发了一种新颖的原位方法。使用这种方法,细胞色素b562是一种带有表面酪氨酸残基的天然蛋白质,很容易被修饰为亚磷酸盐。设计了具有酪氨酸残基的合成蛋白(Yc-27)4,并将其修饰为亚磷酸酯。亚磷酸酯修饰的蛋白质(Yc-27-DEP)4在用于金属连接的适当位置具有酪氨酸残基。还合成了另一种具有酪氨酸残基的四螺旋蛋白(Yc-26)4,并将其修饰为亚磷酸酯(Yc-26-DEP)4。 (Yc-27-DEP)4和(Yc-26-DEP)4均与具有催化活性的铑配合物RhClPPh3反应形成金属蛋白(Yc-27-DEP)4-Rh和(Yc-26-DEP)4 -Rh分别。测试了这些金属蛋白在小烯烃氢化中的催化活性。发现金属蛋白(Yc-26-DEP)4-Rh催化烯烃的氢化,例如环己烯,α-甲基苯乙烯和(R)-香芹酮。使用(Yc-26-DEP)4-Rh氢化手性(R)-香芹酮表明,金属蛋白的反应性比Wilkinson催化剂高。然而,金属蛋白对(R)-香芹酮中环不饱和基的氢化表明它的区域选择性低于威尔金森催化剂。

著录项

  • 作者

    Kamath, Parvathi G.;

  • 作者单位

    Rutgers The State University of New Jersey - Newark.;

  • 授予单位 Rutgers The State University of New Jersey - Newark.;
  • 学科 Chemistry Inorganic.;Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 83 p.
  • 总页数 83
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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