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裂殖酵母中的分子遗传工具与技术

Molecular Genetic Tools and Techniques in Fission Yeast.

作者信息

Murray Johanne M, Watson Adam T, Carr Antony M

机构信息

Genome Damage and Stability Centre, School of Life Sciences, University of Sussex, Falmer, Brighton, E. Sussex BN1 9RQ, United Kingdom.

出版信息

Cold Spring Harb Protoc. 2016 May 2;2016(5):2016/5/pdb.top087601. doi: 10.1101/pdb.top087601.

Abstract

The molecular genetic tools used in fission yeast have generally been adapted from methods and approaches developed for use in the budding yeast, Saccharomyces cerevisiae Initially, the molecular genetics of Schizosaccharomyces pombe was developed to aid gene identification, but it is now applied extensively to the analysis of gene function and the manipulation of noncoding sequences that affect chromosome dynamics. Much current research using fission yeast thus relies on the basic processes of introducing DNA into the organism and the extraction of DNA for subsequent analysis. Targeted integration into specific genomic loci is often used to create site-specific mutants or changes to noncoding regulatory elements for subsequent phenotypic analysis. It is also regularly used to introduce additional sequences that generate tagged proteins or to create strains in which the levels of wild-type protein can be manipulated through transcriptional regulation and/or protein degradation. Here, we draw together a collection of core molecular genetic techniques that underpin much of modern research using S. pombe We summarize the most useful methods that are routinely used and provide guidance, learned from experience, for the successful application of these methods.

摘要

裂殖酵母中使用的分子遗传学工具通常是从为芽殖酵母酿酒酵母开发的方法和途径改编而来的。最初,粟酒裂殖酵母的分子遗传学是为了辅助基因鉴定而发展起来的,但现在它被广泛应用于基因功能分析以及对影响染色体动态的非编码序列的操作。因此,目前许多使用裂殖酵母的研究都依赖于将DNA导入生物体以及提取DNA用于后续分析的基本过程。靶向整合到特定基因组位点通常用于创建位点特异性突变体或改变非编码调控元件以进行后续表型分析。它还经常用于引入产生标记蛋白的额外序列,或创建可以通过转录调控和/或蛋白质降解来操纵野生型蛋白水平的菌株。在这里,我们汇集了一系列核心分子遗传学技术,这些技术是现代使用粟酒裂殖酵母进行许多研究的基础。我们总结了常规使用的最有用的方法,并根据经验为这些方法的成功应用提供指导。

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