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Characterization of Pathogenic Human MSH2 Missense Mutations Using Yeast as a Model System: A Laboratory Course in Molecular Biology

机译:使用酵母作为模型系统表征致病性人类MSH2错义突变:分子生物学实验课程

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This work describes the project for an advanced undergraduate laboratory course in cell and molecular biology. One objective of the course is to teach students a variety of cellular and molecular techniques while conducting original research. A second objective is to provide instruction in science writing and data presentation by requiring comprehensive laboratory reports modeled on the primary literature. The project for the course focuses on a gene, MSH2, implicated in the most common form of inherited colorectal cancer. Msh2 is important for maintaining the fidelity of genetic material where it functions as an important component of the DNA mismatch repair machinery. The goal of the project has two parts. The first part is to create mapped missense mutation listed in the human databases in the cognate yeast MSH2 gene and to assay for defects in DNA mismatch repair. The second part of the course is directed towards understanding in what way are the variant proteins defective for mismatch repair. Protein levels are analyzed to determine if the missense alleles display decreased expression. Furthermore, the students establish whether the Msh2p variants are properly localized to the nucleus using indirect immunofluorescence and whether the altered proteins have lost their ability to interact with other subunits of the MMR complex by creating recombinant DNA molecules and employing the yeast 2-hybrid assay.
机译:这项工作描述了细胞和分子生物学高级本科实验室课程的项目。该课程的一个目标是在进行原创研究的同时,教给学生各种细胞和分子技术。第二个目标是通过要求以原始文献为蓝本的综合实验室报告来提供科学写作和数据表示的指导。该课程的项目着重于MSH2基因,该基因与遗传性大肠癌的最常见形式有关。 Msh2对于维持遗传材料的保真度很重要,在此它是DNA错配修复机制的重要组成部分。该项目的目标分为两个部分。第一部分是在同源酵母MSH2基因的人类数据库中创建映射的错义突变,并分析DNA错配修复中的缺陷。本课程的第二部分旨在了解变异蛋白在错配修复中的缺陷方式。分析蛋白质水平以确定错义等位基因是否显示表达降低。此外,学生通过间接免疫荧光确定Msh2p变体是否正确定位于细胞核,以及通过创建重组DNA分子并采用酵母2杂交试验,改变后的蛋白质是否失去了与MMR复合体其他亚基相互作用的能力。

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