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Discovery and Engineering of Lasso Peptides: Molecular Switches, Post-Translational Modifications, and Fusion Proteins

机译:套索肽的发现和工程:分子开关,翻译后修饰和融合蛋白

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摘要

Lasso peptides are a unique class of natural products, characterized by a threaded topology and remarkable stability. In addition, lasso peptides exhibit a wide range of bioactivities. These properties make them strong candidates for peptide therapeutics and as peptide scaffolds. Despite progress made in the discovery of novel lasso peptides and engineering of lasso peptide based scaffolds, there is still much remaining for further exploration. Thus, this thesis aims 1) to discover and characterize novel lasso peptide gene clusters, 2) to develop an engineering platform for expanding the lasso peptide based scaffolds for potential therapeutic applications.;Chapter 2 presents the optimization of a previous developed precursor-centric genome mining algorithm using new lasso peptide precursor sequence features and new motifs of lasso peptide maturation enzymes. Applying the updated algorithm on DNA contig sets, complete and draft genomes from bacteria and archaea, I was able to identify 948 high confidence putative lasso peptide gene clusters. In addition, I discovered several new gene clusters with novel precursor sequence features and post-translational elements. I found two lasso peptide gene clusters associated with isopeptidases from Gram-negative organism Asticcacaulis benevestitus through the genome mining. In chapter 3, along with Michelle Wu and Jason Qin, I successfully expressed both peptides, named beneondin-1 and benendin-2, in E. coli. The molecular structure of benenodin-1 was solved using solution NMR.;I found benenodin-1 exhibits conformational switching between two distinct threaded conformers upon heat stimulation. This makes benenodin-1 the first natural peptide-based molecular switch. I also showed only the native conformer of benenodin-1 is cleaved by its associated isopeptidase, which may also be relevant to the biological function of these molecules.;Chapter 4 focuses on characterization of a lasso peptide, albusnodin, from Streptomyces albus DSM 41398. I found albusnodin is acetylated, the first example of a lasso peptide with this modification. Performing genetic studies with Wai Ling Cheung-Lee, I further showed that the acetyltransferse colocalized with the albusnodin gene cluster is required for the biosynthesis of this lasso peptide. In addition, bioinformatics analysis showed this type of lasso peptide is widespread in Actinobacteria, with 44 examples found in currently sequenced genomes.;Finally, in chapter 5, I developed a new engineering platform on the lasso peptide, astexin-1. I demonstrated a fusion of two model proteins, the artificial leucine zipper A1 and the superfolder variant of GFP, to the C-terminus of astexin-1. Moreover, along with Kenneth Hubbell and Shubham Chatterjee, I combined this fusion approach with cysteine bio-conjugation chemistry to graft two anticancer epitopes on astexin-1.;Overall, these exciting projects carried out in this thesis have enriched and opened new research areas in the field of lasso peptides.
机译:套索肽是一类独特的天然产物,其特征在于具有螺纹的拓扑结构和出色的稳定性。另外,套索肽表现出广泛的生物活性。这些特性使它们成为肽治疗剂和肽支架的强大候选者。尽管在新型套索肽的发现和基于套索肽的支架的工程化方面取得了进展,但是仍然有很多需要进一步探索。因此,本论文的目的是1)发现和表征新型套索肽基因簇,2)开发工程平台以扩展基于套索肽的支架以用于潜在的治疗应用。;第二章介绍了先前开发的以前体为中心的基因组的优化。使用新的套索肽前体序列特征和套索肽成熟酶的新基序的挖掘算法。将更新的算法应用于DNA重叠群,完整和起草细菌和古细菌的基因组,我能够鉴定948个高可信度推定的套索肽基因簇。此外,我发现了几个具有新的前体序列特征和翻译后元件的新基因簇。我通过基因组挖掘发现了两个与革兰氏阴性生物体甜菜曲霉的异肽酶相关的套索肽基因簇。在第3章中,我与Michelle Wu和Jason Qin一起在大肠杆菌中成功表达了两种肽,分别称为beonondin-1和benendin-2。使用溶液NMR解析了benonodin-1的分子结构。我发现benenodin-1在热刺激下在两个不同的螺纹构象异构体之间显示构象转换。这使benonodin-1成为第一个基于天然肽的分子开关。我还显示,只有benenodin-1的天然构象异构体才被其相关的异肽酶切割,这也可能与这些分子的生物学功能有关。;第4章着重介绍了来自Aleptnodin-1的链霉菌肽albusnodin的表征。我发现albusnodin被乙酰化,这是具有这种修饰的套索肽的第一个例子。用Wai Ling Cheung-Lee进行遗传研究,我进一步表明,与套索蛋白基因簇共定位的乙酰基转移酶是该套索肽的生物合成所必需的。此外,生物信息学分析表明,这种套索肽在放线菌中很普遍,在当前测序的基因组中有44个例子。最后,在第5章中,我在套索肽astexin-1上开发了一个新的工程平台。我证明了两种模型蛋白,即人造亮氨酸拉链A1和GFP的超文件夹变体与astexin-1的C末端融合。此外,我与肯尼斯·哈伯(Kenneth Hubbell)和舒巴姆·查特吉(Shubham Chatterjee)一起,将这种融合方法与半胱氨酸生物缀合化学相结合,在astexin-1上嫁接了两个抗癌表位。套索肽领域。

著录项

  • 作者

    Zong, Chuhan.;

  • 作者单位

    Princeton University.;

  • 授予单位 Princeton University.;
  • 学科 Biochemistry.
  • 学位 Ph.D.
  • 年度 2018
  • 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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