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首页> 外文期刊>Journal of Applied Crystallography >Synchrotron-based macromolecular crystallography module for an undergraduate biochemistry laboratory course
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Synchrotron-based macromolecular crystallography module for an undergraduate biochemistry laboratory course

机译:基于同步加速器的大分子晶体学模块,用于本科生化学实验室课程

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摘要

This paper describes the introduction of synchrotron-based macromolecular crystallography (MX) into an undergraduate laboratory class. An introductory 2 week experimental module on MX, consisting of four laboratory sessions and two classroom lectures, was incorporated into a senior-level biochemistry class focused on a survey of biochemical techniques, including the experimental characterization of proteins. Students purified recombinant protein samples, set up crystallization plates and flash-cooled crystals for shipping to a synchrotron. Students then collected X-ray diffraction data sets from their crystals via the remote interface of the Molecular Biology Consortium beamline (4.2.2) at the Advanced Light Source in Berkeley, CA, USA. Processed diffraction data sets were transferred back to the laboratory and used in conjunction with partial protein models provided to the students for refinement and model building. The laboratory component was supplemented by up to 2 h of lectures by faculty with expertise in MX. This module can be easily adapted for implementation into other similar undergraduate classes, assuming the availability of local crystallographic expertise and access to remote data collection at a synchrotron source.
机译:本文介绍将基于同步加速器的大分子晶体学(MX)引入本科实验室课程。在MX上的一个为期2周的入门实验模块,包括四个实验室会议和两个课堂讲座,被纳入了高级生物化学课程,该课程侧重于生化技术的调查,包括蛋白质的实验表征。学生们纯化了重组蛋白样品,设置了结晶板和快速冷却的晶体,以运送到同步加速器中。然后,学生通过位于美国加利福尼亚州伯克利的Advanced Light Source的分子生物学协会光束线(4.2.2)的远程接口从晶体中收集X射线衍射数据集。经过处理的衍射数据集被转移回实验室,并与提供给学生的部分蛋白质模型结合使用,以进行完善和模型构建。具有MX专业知识的教员最多可以进行2小时的讲座,以补充实验室内容。假定具备本地晶体学专业知识并能从同步加速器源获得远程数据收集,则该模块可以轻松地应用于其他类似的本科课程。

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