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一组用于系统检测酿酒酵母有丝分裂稳定性的异构附加体质粒。

A set of isomeric episomal plasmids for systematic examination of mitotic stability in Saccharomyces cerevisiae.

作者信息

Hohnholz Ruben, Pohlmann Kim Julia, Achstetter Tilman

机构信息

City University of Applied Sciences Bremen, Neustadtswall 30, D-28199, Bremen, Germany.

Jacobs University Bremen, Campus Ring 1, D-28759, Bremen, Germany.

出版信息

Yeast. 2017 Jun;34(6):267-275. doi: 10.1002/yea.3231. Epub 2017 Mar 24.

Abstract

Yeast episomal shuttle vectors (YEp type) are commonly used in fundamental research and biotechnology whenever elevated product levels are desired. Their instability, however, poses an impediment not only in industrial scale fermentation. In order to analyse instability which might be linked to plasmid structure, a series of YEp type plasmids that are identical in size has been assembled, differing only in the overall arrangement of the fragments used. The performance of the eight plasmid isoforms was studied with respect to mitotic stability. While transformation efficiency in two laboratory strains of Saccharomyces cerevisiae does not differ dramatically between the eight plasmids, the plasmids do not, however, perform equally well in terms of segregational stability. Although stable at about 90% plasmid-bearing cells in selective medium, under non-selective conditions, three plasmid forms performed better than the other five with an up to 5.7-fold higher stability as compared with the least favourable isoform. In a subset of four plasmids (including stable and unstable isoforms) copy numbers were determined. Furthermore the functionality of the selection marker was characterized with respect to plasmid-derived relative HIS3 transcript levels. No significant differences in HIS3 transcript levels could be observed between strains carrying any one of the four plasmids. Ruling out copy number and performance of HIS3, the results indicate nevertheless that plasmid architecture has an impact on mitotic segregation in yeast and that construction of an expression vector should take into account that the plasmid backbone itself might already show a more or less favourable arrangement of its segments. © 2017 The Authors. Yeast published by John Wiley & Sons, Ltd.

摘要

酵母附加型穿梭载体(YEp型)常用于基础研究和生物技术领域,以实现产物水平的提高。然而,其不稳定性不仅在工业规模发酵中构成障碍。为了分析可能与质粒结构相关的不稳定性,我们构建了一系列大小相同的YEp型质粒,它们的区别仅在于所用片段的整体排列。我们研究了这八种质粒异构体在有丝分裂稳定性方面的表现。虽然在酿酒酵母的两个实验室菌株中,这八种质粒的转化效率没有显著差异,但在分离稳定性方面,它们的表现并不相同。在选择性培养基中,约90%携带质粒的细胞是稳定的,但在非选择性条件下,三种质粒形式的表现优于其他五种,其稳定性比最不稳定的异构体高出5.7倍。我们测定了四种质粒(包括稳定和不稳定异构体)的拷贝数。此外,我们还根据质粒衍生的相对HIS3转录水平对选择标记的功能进行了表征。在携带这四种质粒中任何一种的菌株之间,未观察到HIS3转录水平的显著差异。排除HIS3的拷贝数和性能因素,结果表明,质粒结构对酵母中的有丝分裂分离有影响,并且在构建表达载体时应考虑到质粒骨架本身的片段排列可能已经或多或少地呈现出有利的状态。© 2017作者。《酵母》由约翰·威利父子有限公司出版。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71be/5485127/058b9169b03a/YEA-34-267-g001.jpg

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