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酵母DNA质粒

Yeast DNA plasmids.

作者信息

Gunge N

出版信息

Annu Rev Microbiol. 1983;37:253-76. doi: 10.1146/annurev.mi.37.100183.001345.

Abstract

The study of yeast DNA plasmids has been initiated with the discovery of the 2-micron DNA in Saccharomyces cerevisiae. This multiple copy plasmid, organized into chromatin structure in vivo, probably exists in the nucleus and provides a good system to obtain information on eukaryotic DNA replication. Yeast transformation with the 2-micron DNA or artificially constructed chimeric plasmids had contributed significantly to the study of the molecular biology of yeast and eukaryotes, allowing the isolation and characterization of various genes, ars, centromeres, and telomeres, and also serving as a tool to study the expression of various heterologous genes. Encouraged by these fruitful results, new yeast plasmids have been screened among phylogenetically distant yeasts. The linear DNA plasmids (pGKl1 and pGKl2) from Kluyveromyces lactis are the first case of yeast plasmids associated with biological function (killer phenotype). This plasmid system would be ideal as a model to study the structure and function of eukaryotic linear chromosomes. The extracellular secretion of protein toxin suggests the plasmids to be an excellent candidate for a secretion vector. The importance of yeasts as suitable materials for the study of eukaryotic cell biology would be much enhanced by the advent of new transformation systems with diverse host yeasts of genetically and phylogenetically distinct properties.

摘要

随着酿酒酵母中2μm DNA的发现,酵母DNA质粒的研究拉开了序幕。这种多拷贝质粒在体内组装成染色质结构,可能存在于细胞核中,为获取真核生物DNA复制信息提供了一个良好的系统。用2μm DNA或人工构建的嵌合质粒对酵母进行转化,对酵母和真核生物分子生物学的研究做出了重大贡献,使得各种基因、自主复制序列(ARS)、着丝粒和端粒得以分离和表征,还作为研究各种异源基因表达的工具。受这些丰硕成果的鼓舞,人们在系统发育关系较远的酵母中筛选新的酵母质粒。乳酸克鲁维酵母的线性DNA质粒(pGKl1和pGKl2)是与生物学功能(杀伤表型)相关的酵母质粒的首例。该质粒系统作为研究真核生物线性染色体结构和功能的模型将是理想的。蛋白质毒素的细胞外分泌表明这些质粒是分泌载体的极佳候选者。具有遗传和系统发育特性各异的多种宿主酵母的新转化系统的出现,将大大提升酵母作为研究真核细胞生物学合适材料的重要性。

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