首页> 外文学位 >I. Methodology development for the synthesis of geminally disubstituted beta-amino acids, beta-proline analogs and allylic amines. II. Progress towards the synthesis of an artificial transcription activator .
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I. Methodology development for the synthesis of geminally disubstituted beta-amino acids, beta-proline analogs and allylic amines. II. Progress towards the synthesis of an artificial transcription activator .

机译:I.用于合成双取代的β-氨基酸,β-脯氨酸类似物和烯丙基胺的方法学发展。二。合成人工转录激活剂的研究进展。

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As part of an ongoing program to use organic chemistry as a tool to study protein-protein interactions in transcription, my research has focused on the development of new methods for the synthesis of small chiral building blocks such as beta-amino acids and allylic amines. Both of these methods involve the selective formation of nitrogen-bearing stereocenters. These newly developed methods serve as valuable additions to the current approaches for the selective C-N bond formation. In addition, these new approaches have been applied to the synthesis of biopolymer mimics such as beta-proline analogs and artificial transcription activators.; The first research project focused on the stereoselective synthesis of beta-amino acids highly substituted at the C2 (alpha) and C3 (beta positions (beta 3,3- and beta2,3,3-). The synthetic strategy utilized a stereospecific construction of isoxazoline via a 1,3-dipolar cycloaddition of nitrile oxides and allylic alcohols. The C3 stereochemistry was then introduced by a highly diastereoselective nucleophilic addition to the C= N in the isoxazolines. N-O bond cleavage by LiAlH4, in situ protection of the resulting free amine followed by oxidative cleavage provided enantiopure beta-amino acids in good yields. This methodology has successfully been used to prepare seven new beta-amino acids with alkyl, aryl, and heteroaryl groups at the C3 (beta) position. This methodology was also adapted for the synthesis of beta-proline analog monomers.; The second research project explored a thermal and catalyzed phosphorimidate to phosphoramidate [3,3]-rearrangement for the facile and selective preparation of allylic amines. The precursor of the rearrangement, a phosphorimidate, can be easily assembled from readily available allylic alcohols, azides and phosphites, rendering this new method an efficient three component, one pot process. Chirality transfer study and crossover experiment were also carried out to probe the mechanism of the rearrangement under thermal conditions. Furthermore, a highly efficient Pd (II)-catalyzed rearrangement has also been developed providing a new avenue for future asymmetric synthesis of allylic amines.; The third research project aimed to synthesize Artificial Transcription Activators (ATA) designed to regulate gene transcription in yeast. Genome-wide expression analyses have revealed that there are critical differences in gene expression profiles between healthy and diseased tissues. As a consequence, the development of transcription-based therapeutics that would selectively reprogram aberrant gene expression in diseased cells is an increasingly attractive goal. Fueled by this goal, a dendritic scaffold with three peptidic activation domains was successfully constructed.
机译:作为正在进行的计划的一部分,该计划使用有机化学作为工具来研究转录过程中蛋白质与蛋白质的相互作用,我的研究重点是开发合成小的手性构件的新方法,例如β-氨基酸和烯丙基胺。这两种方法都涉及选择性形成含氮立体中心。这些新开发的方法可作为当前选择性C-N键形成方法的宝贵补充。此外,这些新方法已应用于生物聚合物模拟物的合成,例如β-脯氨酸类似物和人工转录激活剂。第一个研究项目专注于立体选择性合成在C2(alpha)和C3(beta位置(beta 3,3-和beta2,3,3-)高度取代的β-氨基酸。通过1,3-偶极环氧化腈和烯丙醇加成异恶唑啉,然后通过在非异恶唑啉中C = N的高度非对映选择性亲核加成反应引入C3立体化学,LiAlH4裂解NO键,原位保护所得游离基胺随后进行氧化裂解可提供高纯度的对映体纯β-氨基酸,该方法已成功用于制备7个在C3(β)位置带有烷基,芳基和杂芳基的新β-氨基酸。 ;用于第二个脯氨酸类似物单体的合成;第二个研究项目探索了一种热催化的亚氨基磷酸酯到氨基磷酸酯[3,3]重排的方法,该方法制备简便,选择性比例的烯丙基胺。重排的前体,亚磷酸酯,可以很容易地由容易获得的烯丙醇,叠氮化物和亚磷酸酯组装而成,使这种新方法成为有效的三组分,一锅法。还进行了手性转移研究和交叉实验,以探讨热条件下重排的机理。此外,还开发了一种高效的Pd(II)催化重排,为将来不对称合成烯丙基胺提供了新途径。第三个研究项目旨在合成旨在调节酵母基因转录的人工转录激活剂(ATA)。全基因组表达分析表明,健康组织和患病组织之间的基因表达谱存在重大差异。结果,开发可选择性地重编程患病细胞中异常基因表达的基于转录的治疗剂成为越来越有吸引力的目标。以此目标为动力,成功构建了具有三个肽激活域的树突状支架。

著录项

  • 作者

    Chen, Bin.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 172 p.
  • 总页数 172
  • 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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