MRI: Acquisition of modern x-ray diffraction equipment to enhance research and training
MRI: Acquisition of modern x-ray diffraction equipment to enhance research and training
批准号:
1228874
负责人:
Sean Johnson
金额:
$31.32万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-07-15 至 2015-06-30
中文摘要
该NSF MRI奖将用于获得一种新的旋转阳极X射线发生器和用于大分子晶体学的光学器件,完成多年的努力,将最先进的晶体学设施带到犹他州州立大学。该设备支持USU校园和周边机构的一些研究人员,他们依赖于结构信息,但否则将有限或无法获得结构方法。通过该奖项提供的改进的X射线能力将大大提高确定大型生物分子的高分辨率晶体结构的努力。这些设施支持的项目范围广泛,包括RNA监测、磷酰基转移、代谢工程、翻译后修饰、碳氢化合物代谢、进化适应和生物燃料合成的研究。结构研究在生物和生物化学研究的所有领域都起着至关重要的作用,是学生培训不可或缺的组成部分。在美国的山间地区,大分子晶体学的设施极其有限。位于USU校园的晶体学设施为整个地区的研究人员提供了重要的资源。现代X射线源的能力和可靠性的提高将促进当前用户以及USU和周边地区的其他研究小组的使用。这种新的最先进的仪器,加上长期专注于合作研究和培训,将结构生物学的全面影响带到了一个较小的,地理位置偏远的机构。它还提供了一个可以在类似环境中复制的模型。制定了培训计划,以最大限度地利用仪器。我们的方法(1)使研究小组能够独立地进行晶体学实验,(2)提供广泛的结构方法。新的课程已经被设计用于教授本科和研究生阶段的晶体学方法。显著的财政资源可在USU校园支持本科生研究,和每个PI已经建立了跟踪记录从事本科生在他们的研究工作。外展工作包括将结构生物学纳入该部门支持的夏季高中研究计划。扩大的课程设置和学生指导,再加上教师的科学专业知识和新的最先进的仪器,将使广泛的曝光和直接进入结构生物学的迅速扩大的领域。
英文摘要
This NSF MRI award will be used to acquire a new rotating anode x-ray generator and optics for macromolecular crystallography, completing a multi-year effort to bring state-of-the-art crystallographic facilities to Utah State University. The equipment supports a number of researchers on the USU campus and surrounding institutions who depend on structural information but would otherwise have limited or no access to structural methods. The improved x-ray capabilities provided through this award will significantly enhance efforts to determine high-resolution crystal structures of large biological molecules. The projects supported by these facilities are wide-ranging and include investigation of RNA surveillance, phosphoryl transfer, metabolic engineering, post-translational modification, hydrocarbon metabolism, evolutionary adaptation and biofuel synthesis.Structural studies play an essential role in all areas of biological and biochemical research, and are an indispensable component of student training. Facilities for macromolecular crystallography are extremely limited in the Intermountain Region of the United States. The crystallographic facilities located on the USU campus provide a critical resource for researchers throughout the area. The increased capability and reliability of a modern x-ray source will promote increased use by the current users as well as other research groups at USU and the surrounding region. This new state-of-the-art instrumentation, combined with a long-term focus on collaborative research and training, brings the full impact of structural biology to a smaller, geographically remote institution. It further provides a model that may be reproduced in similar environments. A training plan is in place for maximizing usage of the instrument. Our approach (1) enables research groups to perform crystallographic experiments independently, and (2) provides widespread exposure to structural methods. New coursework has been designed to teach crystallographic methods at both the undergraduate and graduate levels. Significant financial resources are available on the USU campus for support of undergraduate research, and each of the PIs have established track records engaging undergraduate students in their research efforts. Outreach efforts include integration of structural biology into a summer high school research program supported by the department. The expanded course offerings and student mentoring, coupled with faculty scientific expertise and new state-of-the-art instrumentation, will give widespread exposure and direct access to the rapidly expanding field of structural biology.
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会议论文
CAREER: Structural Studies of Ski2-like RNA Helicases
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批准号:0952920
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项目类别:Continuing Grant
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资助金额:$106.32万
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财政年份:2010
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负责人:Sean Johnson
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依托单位:
海外基金