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In Vivo Pathways of Molecular Evolution: Acquisition of Thermostability by Mesophilic Adenylate Kinase

In Vivo Pathways of Molecular Evolution: Acquisition of Thermostability by Mesophilic Adenylate Kinase
分子进化的体内途径:嗜温腺苷酸激酶获得热稳定性
批准号:
0212417
负责人:
Adil Shamoo
金额:
$38.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-09-01 至 2006-08-31

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中文摘要
翻译
使用体内分子进化,P.I.正在研究有机体如何突变一个必需基因以应对环境的变化。模式生物是B的遗传修饰菌株。嗜热脂肪菌(一种嗜热菌),其必需腺苷酸激酶基因(adk)的野生型拷贝被嗜中温B取代。subtilis基因该基金关注分子进化的两个关键属性;首先,细菌种群适应极端环境的特征是什么,其次,从这些选择中产生的蛋白质的物理化学性质是什么。这些实验跟踪了突变细菌的种群,因为它们竞争生存,并将使用X射线晶体学来检查热稳定性增加的立体化学基础。嗜温和嗜热同源物的序列和结构比较表明,氨基酸序列的许多变化可以增加热稳定性,而体外定向进化已经表明,较少数量的变化可以经常引起活性/热稳定性的所需变化。从这些观察中经常得出的一个结论是,序列中的许多差异是进化漂移的结果,而不是进化的必然性。为了确定指导蛋白质进化的原则,正在确定细菌群体在将必需蛋白质进化为更高的热稳定性时所采取的突变路径。连同原子分析的蛋白质中间体沿着这条道路,复杂的序列表面,构成了突变路径的热稳定性的模型蛋白质将被探讨。改变进化实验的条件也可以改变细菌种群使用的“突变路径”,并允许进一步了解进化。因此,这项工作的主要目标是阐明体内使用的途径,并应用生物物理学方法来理解精心设计的突变途径的物理基础。
英文摘要
Using in vivo molecular evolution the P.I. is studying how an organism mutates an essential gene as a response to changes in its environment. The model organism is a genetically modified strain of B. stearothermophilus (a thermophile) that has had the wild type copy of the essential adenylate kinase gene (adk) replaced by the mesophilic B. subtilis gene. The grant focuses on two key attributes of molecular evolution; firstly, what are the characteristics of bacterial populations as they adapt to environmental extremes, and secondly, what are the physicochemical properties of the proteins generated from these selections. The experiments follow populations of mutant bacteria as they compete for survival and will use x-ray crystallography to examine the stereochemical basis for increases in thermostability.Sequence and structure based comparisons of mesophilic and thermophilic homologs have suggested that numerous changes in amino acid sequence can increase thermostability, whereas in vitro directed evolution has shown that a smaller number of changes can frequently bring about the required changes in activity/thermostability. One conclusion frequently drawn from these observations is that many of the differences seen in sequence are the result of evolutionary drift, rather than evolutionary necessity. To determine the principles that guide evolution of a protein, the mutational path(s) taken by a population of bacteria as they evolve an essential protein to higher thermostability is being determined. Together with atomic analysis of the protein intermediates along this path, the complex sequence surface that constitutes the mutational path to thermostability for the model protein will be explored. Altering conditions of the evolution experiment can also change the "mutational path" used by the bacterial populations and allow further insights into evolution. Thus the primary goal of the work is to elucidate the pathway(s) used in vivo and to apply biophysical methods to understand the physical basis for the elaborated mutational pathway(s).
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A high throughput approach for building and surveying the emergent properties of synthetic ecologies
  • 批准号:
    2247573
  • 项目类别:
    Standard Grant
  • 资助金额:
    $80.0万
  • 财政年份:
    2023
  • 负责人:
    Adil Shamoo
  • 依托单位:
In Vivo Pathways of Molecular Evolution: Acquisition of Thermostability by Mesophilic Adenylate Kinases
  • 批准号:
    0641792
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $0.0万
  • 财政年份:
    2007
  • 负责人:
    Adil Shamoo
  • 依托单位:
Multiuser Equipment Proposal
Calciphorin Structure and Function
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