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Bringing Modern Circular Dichroism Instrumentation to Notre Dame Researchers

Bringing Modern Circular Dichroism Instrumentation to Notre Dame Researchers
为圣母大学研究人员带来现代圆二色性仪器
批准号:
7794428
负责人:
Patricia Louise Clark
金额:
$14.45万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-12-10 至 2010-12-09

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):蛋白质构象变化的特征是在分子水平上理解生物功能的关键先决条件。圆二色谱(CD)几十年来一直是生物物理工具包的重要组成部分,它利用小分子、蛋白质和核酸的手性性质来提供关于分子结构及其变化的信息。例如,蛋白质展开(由温度或pH等扰动引起)或折叠(由小分子配体、蛋白质或核酸结合引起)引起的二级结构变化可以快速而容易地量化为远紫外圆二色谱的变化。另外,圆二色谱也是研究小分子手性选择性的基本技术,包括药物、荧光染料和用于模拟酶催化的化学催化剂。在过去的十年中,仪器光学的进步,以及附加功能的发展,如同时荧光检测,以及与停流动力学设备的无缝集成,进一步加强了CD光谱在生物医学研究中的应用。这项提案是对计划公告PAR-09-028的回应,要求提供资金购买最先进的CD光谱偏振器,以促进圣母大学科学家的研究目标。这台仪器将取代我们目前的Cary/Aviv仪器,尽管它仍然具有生产力,并在其25年的使用寿命内仔细维护,但现在在光学和电子方面已经过时。新仪器将被安置在最近翻新和扩建的核心设施中,它是目前正在进行的扩大和改善圣母大学研究基础设施的大型努力的一部分。因此,对该仪器的监督、维护和维护将通过扩展核心设施员工来创造就业机会,同时获得这种最先进的研究设备将继续促进巴黎圣母院的研究企业努力。
英文摘要
DESCRIPTION (provided by applicant): Characterization of protein conformational changes is a crucial pre-requisite to understanding biological functions on a molecular level. Circular dichroism (CD) spectroscopy has been an essential component of the biophysical tool kit for decades, exploiting the chiral properties of small molecules, proteins and nucleic acids to provide information on molecular structure and its changes. For example, changes in secondary structure caused by protein unfolding (induced by perturbants such as temperature or pH), or folding (induced by the binding of a small molecule ligand, protein, or nucleic acid) can be quickly and easily quantified as changes in the far-UV CD spectrum. Separately, CD spectroscopy is also an essential technique in the study of chiral-selective properties of small molecules, including drugs, fluorescent dyes, and chemical catalysts designed to mimic enzymatic catalysis. Over the past decade, advancements in instrument optics, as well as the development of additional functionalities such as simultaneous fluorescence detection, and seamless integration with stopped-flow kinetic devices, have further enhanced the utility of CD spectroscopy for biomedical studies. This proposal, in response to Program Announcement PAR-09-028, requests funds to purchase a state-of-the-art CD spectropolarimeter to further the research goals of University of Notre Dame scientists. This instrument will replace our current Cary/Aviv instrument, which although still productive and carefully maintained for its >25 years of life, is now optically and electronically obsolete. The new instrument will be housed in a recently renovated and expanded core facility, and represents one piece of a large effort currently underway to expand and improve research infrastructure at the University Of Notre Dame. As such, supervision, care and maintenance of this instrument create employment opportunities through core facility staff expansion, while access to this state-of-the-art research equipment will continue to grow the research enterprise efforts at Notre Dame.
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Decoding the regulation of protein folding by synonymous codon usage
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