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CAREER: Quadruplet Codon Decoding - Mechanistic Studies and Application in Cellular Genetic Code Expansion

CAREER: Quadruplet Codon Decoding - Mechanistic Studies and Application in Cellular Genetic Code Expansion
职业:四联体密码子解码 - 机制研究及其在细胞遗传密码扩展中的应用
批准号:
1553041
负责人:
Jiantao Guo
金额:
$62.23万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-04-01 至 2022-03-31

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中文摘要
翻译
所有生物体转录和翻译由DNA编码的信息分别通过众所周知的转录和翻译过程。这个过程将储存在DNA中的信息转化为蛋白质功能,这是维持生命反应的基本催化剂。在这个过程中,基因中的每三个核苷酸被解读为一个特定的代码,用于自然构建块蛋白质合成的序列整合。本研究旨在重构翻译机制,以进化出新的转移rna物种,这些物种将识别非天然氨基酸的特定翻译结合的非三核苷酸编码,而是四核苷酸编码。目标是创造具有新型催化功能和化学性质的蛋白质,以帮助生物化学和生物医学研究。此外,本研究还将揭示翻译的详细机制的基本问题。该项目将吸引、培养今天的年轻人才,并将他们转变为化学和生物学领域未来的科学领袖。在拟议的研究计划下获得的科学见解和新技术将对广泛的生物化学和合成生物学研究界有价值。虽然三联体密码子是当前遗传密码的主要形式,但四联体密码子的非规范读取是一个自然过程,可以在实验条件下实现。转运RNA (tRNA)在四联体密码子解码过程中起着重要作用。这项工作将使用定向进化方法来鉴定tRNA突变体,这些突变体能够有效地解码基因组编码细菌中的四联体密码子。对四联体密码子解码机制的系统研究将有助于理解核糖体如何识别阅读框。通过使用多个相互正交的四联体密码子扩展细胞遗传密码,进一步加强了这一研究。这将允许掺入具有不同物理和化学性质的非天然氨基酸。该技术的应用可以实现对活细胞中蛋白质的前所未有的体内研究,并可以实现新的合成生物学应用。
英文摘要
All living organisms transcribe and translate the information encoded by DNA by well-understood processes known as transcription and translation respectively. The process converts the information stored in DNA into protein functions that are essential catalysts for life supporting reactions. In this process, every three nucleotides in a gene are read as a specific code for the serial incorporation of the natural building blocks protein synthesis. This study aims at refactoring the translational machinery to evolve novel transfer-RNA species that will recognize not a three-, but four-nucleotide code for the specific translational incorporation of unnatural amino acids. The objective is to create proteins that feature novel catalytic functions and chemical properties to aid biochemical and biomedical research. In addition, this research will shed light on fundamental questions about detailed mechanisms of translation. The project will attract, train, and transform today's young talents into tomorrow's leaders in sciences at the interface of chemistry and biology. The scientific insights and new technologies obtained under the proposed research program will be valuable to a broad biochemistry and synthetic biology research community.While the triplet codon is the predominant form of the current genetic code, non-canonical reading of a quadruplet codon is a natural process and can be achieved under experimental conditions. Transfer RNA (tRNA) plays important roles in the quadruplet codon decoding process. The work will use a directed evolution approach to identify tRNA mutants that are able to efficiently decode quadruplet codons in a genomically recoded bacterium. A systematic study of quadruplet codon decoding mechanism will be conducted, which is likely contribute to the understanding on how ribosomes recognize the reading frame. This research is further strengthen by expanding the cellular genetic code with multiple and mutually orthogonal quadruplet codons. This would allow for the incorporation of t unnatural amino acids with different physical and chemical properties. Applications of this technology could enable unprecedented in vivo study of proteins in living cells, and could enable novel synthetic biology applications.
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会议论文
Mechanistic Study of Cellulosome Through Reprogramming Its Assembly
  • 批准号:
    1264708
  • 项目类别:
    Standard Grant
  • 资助金额:
    $30.77万
  • 财政年份:
    2013
  • 负责人:
    Jiantao Guo
  • 依托单位:
海外基金