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用于检测突变特异性的酵母系统的开发。

Development of a yeast system to assay mutational specificity.

作者信息

Pierce M K, Giroux C N, Kunz B A

出版信息

Mutat Res. 1987 Apr;182(2):65-74. doi: 10.1016/0165-1161(87)90055-0.

DOI:10.1016/0165-1161(87)90055-0
PMID:3550444
Abstract

We have developed a system wherein DNA alterations occurring in a target gene in the yeast Saccharomyces cerevisiae can be determined by DNA sequencing. The target gene, SUP4-o, an ochre suppressor allele of a yeast tyrosine tRNA gene, has been inserted into a shuttle vector (YCpMP2) which is maintained in yeast at a copy number of one per cell Mutations in SUP4-o are selected by virtue of their inactivation of suppressor activity. Rapid DNA preparations from these mutants are used to transform an appropriate bacterial strain. Since YCpMP2 also carries the M13 phage replication origin, superinfection of bacterial cells containing the plasmid with wild-type M13 phage yields single stranded YCpMP2 DNA suitable for dideoxynucleotide chain termination sequencing. We have used this system to examine mutations arising spontaneously in the SUP4-o gene. The spontaneous mutants occurred at a frequency of 3.2 X 10(-6)/viable cell, corresponding to a rate of 2.7 X 10(-7) events/cell division. Following bacterial transformation, 16% of the recovered plasmids tested displayed altered gel mobility consistent with loss of significant portions of the plasmid. Hybridization analysis of total yeast DNA and use of purified YCpMP2 revealed that these very large deletions were not generated in yeast but were associated with bacterial transformation. Among the SUP4-o mutants analyzed by DNA sequencing, we identified each type of single base pair substitution (transitions and transversions), small deletions of varying length (1-32 base pairs) and more extensive deletions of undetermined size. These results demonstrate that the SUP4-o system can be used to detect various types of mutation at numerous sites in a single eukaryotic gene and to characterize the DNA sequence changes responsible for the mutations selected.

摘要

我们开发了一种系统,通过DNA测序可确定酿酒酵母(Saccharomyces cerevisiae)中目标基因发生的DNA改变。目标基因SUP4 - o是酵母酪氨酸tRNA基因的赭石抑制等位基因,已被插入到穿梭载体(YCpMP2)中,该载体在酵母中以每个细胞一个拷贝数维持。通过SUP4 - o抑制活性的失活来选择其突变。从这些突变体中快速制备的DNA用于转化合适的细菌菌株。由于YCpMP2还携带M13噬菌体复制起点,用野生型M13噬菌体对含有该质粒的细菌细胞进行超感染可产生适用于双脱氧核苷酸链终止测序的单链YCpMP2 DNA。我们已使用该系统检测SUP4 - o基因中自发产生的突变。自发突变体的出现频率为3.2×10⁻⁶/活细胞,相当于2.7×10⁻⁷事件/细胞分裂率。细菌转化后,检测的回收质粒中有16%显示凝胶迁移率改变,这与质粒大部分缺失一致。对酵母总DNA的杂交分析以及使用纯化的YCpMP2表明,这些非常大的缺失不是在酵母中产生的,而是与细菌转化有关。在通过DNA测序分析的SUP4 - o突变体中,我们鉴定出了每种类型的单碱基对替换(转换和颠换)、不同长度(1 - 32个碱基对)的小缺失以及大小未确定的更广泛缺失。这些结果表明,SUP4 - o系统可用于检测单个真核基因中多个位点的各种类型突变,并表征导致所选突变的DNA序列变化。

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Development of a yeast system to assay mutational specificity.用于检测突变特异性的酵母系统的开发。
Mutat Res. 1987 Apr;182(2):65-74. doi: 10.1016/0165-1161(87)90055-0.
2
Highly mutable sites for ICR-170-induced frameshift mutations are associated with potential DNA hairpin structures: studies with SUP4 and other Saccharomyces cerevisiae genes.ICR - 170诱导的移码突变的高度可变位点与潜在的DNA发夹结构相关:对SUP4和其他酿酒酵母基因的研究
Mol Cell Biol. 1986 Dec;6(12):4425-32. doi: 10.1128/mcb.6.12.4425-4432.1986.
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Frameshift suppressor mutations affecting the major glycine transfer RNAs of Saccharomyces cerevisiae.影响酿酒酵母主要甘氨酸转运RNA的移码抑制突变。
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Partial suppression of an ochre mutation in Saccharomyces cerevisiae by multicopy plasmids containing a normal yeast tRNAGln gene.含有正常酵母tRNAGln基因的多拷贝质粒对酿酒酵母中一个赭石突变的部分抑制作用。
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Mutations at the yeast SUP4 tRNATyr locus: DNA sequence changes in mutants lacking suppressor activity.酵母SUP4 tRNATyr基因座的突变:缺乏抑制活性的突变体中的DNA序列变化。
Cell. 1980 Jul;20(3):701-9. doi: 10.1016/0092-8674(80)90316-5.
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Effects of alterations in the 3' flanking sequence on in vivo and in vitro expression of the yeast SUP4-o tRNATyr gene.3'侧翼序列改变对酵母SUP4-o tRNATyr基因体内和体外表达的影响。
EMBO J. 1985 Oct;4(10):2657-64. doi: 10.1002/j.1460-2075.1985.tb03984.x.
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In vitro mutagenesis of the yeast SUP4-o gene to identify all substitutions that can be detected in vivo with the SUP4-o system.对酵母SUP4-o基因进行体外诱变,以鉴定所有可通过SUP4-o系统在体内检测到的替换。
Environ Mol Mutagen. 1992;19(4):282-7. doi: 10.1002/em.2850190404.
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Disruption of the RAD52 gene alters the spectrum of spontaneous SUP4-o mutations in Saccharomyces cerevisiae.RAD52基因的破坏改变了酿酒酵母中自发SUP4-o突变的谱。
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Excision repair and gene orientation modulate the strand specificity of UV mutagenesis in a plasmid-borne yeast tRNA gene.切除修复和基因方向调节质粒携带的酵母tRNA基因中紫外线诱变的链特异性。
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DNA sequence analysis of the mutational specificity of u.v. light in the SUP4-o gene of yeast.酵母SUP4 - o基因中紫外线诱变特异性的DNA序列分析。
Mutagenesis. 1987 Nov;2(6):445-53. doi: 10.1093/mutage/2.6.445.

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