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可转座酵母交配型基因座的结构。

The structure of transposable yeast mating type loci.

作者信息

Nasmyth K A, Tatchell K

出版信息

Cell. 1980 Mar;19(3):753-64. doi: 10.1016/s0092-8674(80)80051-1.


DOI:10.1016/s0092-8674(80)80051-1
PMID:6244896
Abstract

A recombinant plasmid containing a MAT alpha mating type locus of Saccharomyces cerevisiae has been isolated by its ability to complement a sterile mat alpha mutation. The plasmid hybridizes to restriction fragments containing both active mating type loci (MATa and MAT alpha) and both silent mating type loci (HMRa and HML alpha). All loci therefore have common sequences. Recombinant lambda clones of the locihave been isolated by plaque hybridization and their structures have been compared by a heteroduplex analysis. At its center, each locus contains one of two apparently nonhomologous sequences. Loci concerned with the alpha phenotype (MAT alpha and HML alpha) contain and 850 bp alpha-specific sequence, whereas loci concerned with the a phenotype (MATa and HMRa) contain a 700 bp a-specific sequence. The a- or alpha-specific sequences are surrounded by DNA sequences that are common to all loci. These homologous sequences extend for 230 bp on the left and 700 bp on the right. They appear to be unrelated to each other. Surprisingly, HML alpha and HMRa differ in their extent of homology to MATa and MAT alpha outside the above regions. HMRa lacks an extensive (700 bp) DNA sequence to the right of the large right-hand homologous region, and possibly also a small (90 bp) sequence to the left of the small left-hand homologous region, both of which are present at HML alpha, MATa and MAT alpha. Hybridization studies have shown that the 700 bp sequence is present at HMLa but absent at HMR alpha alleles. It is therefore characteristic of HML, irrespective of whether it contains a- or alpha-specific sequences. The results imply that mating type interconversion is effected by transposition of DNA sequences from HML or HMR to MAT, as predicted by the controlling element model of Oshima and Takano (1971) and the Cassette model of Hicks, Strathern and Herskowitz (1977).

摘要

通过其对不育的matα突变进行互补的能力,已分离出一种含有酿酒酵母MATα交配型基因座的重组质粒。该质粒与包含活性交配型基因座(MATa和MATα)以及沉默交配型基因座(HMRa和HMLα)的限制性片段杂交。因此,所有基因座都有共同序列。通过噬菌斑杂交分离出了这些基因座的重组λ克隆,并通过异源双链分析比较了它们的结构。每个基因座在其中心包含两个明显非同源序列之一。与α表型相关的基因座(MATα和HMLα)包含一个850 bp的α特异性序列,而与a表型相关的基因座(MATa和HMRa)包含一个700 bp的a特异性序列。a或α特异性序列被所有基因座共有的DNA序列包围。这些同源序列在左侧延伸230 bp,在右侧延伸700 bp。它们似乎彼此不相关。令人惊讶的是,HMLα和HMRa在上述区域之外与MATa和MATα的同源程度不同。HMRa在右侧大的同源区域右侧缺少一个广泛的(700 bp)DNA序列,并且可能在左侧小的同源区域左侧也缺少一个小的(90 bp)序列,而这两个序列在HMLα、MATa和MATα中都存在。杂交研究表明,700 bp序列存在于HMLa中,但在HMRα等位基因中不存在。因此,无论它包含a还是α特异性序列,它都是HML的特征。结果表明,交配型的相互转换是由DNA序列从HML或HMR转座到MAT而实现的,正如大岛和高野(1971年)的控制元件模型以及希克斯、斯特拉瑟恩和赫斯科维茨(1977年)的盒式模型所预测的那样。

相似文献

[1]
The structure of transposable yeast mating type loci.

Cell. 1980-3

[2]
Structure and organization of transposable mating type cassettes in Saccharomyces yeasts.

Proc Natl Acad Sci U S A. 1980-5

[3]
Homothallic switching of yeast mating type cassettes is initiated by a double-stranded cut in the MAT locus.

Cell. 1982-11

[4]
Evidence for a physical interaction between the transposed and the substituted sequences during mating type gene transposition in yeast.

Cell. 1980-11

[5]
Directionality of yeast mating-type interconversion.

Cell. 1982-3

[6]
Donor locus selection during Saccharomyces cerevisiae mating type interconversion responds to distant regulatory signals.

Genetics. 1992-12

[7]
Mechanism of MAT alpha donor preference during mating-type switching of Saccharomyces cerevisiae.

Mol Cell Biol. 1996-2

[8]
The sequence of the DNAs coding for the mating-type loci of Saccharomyces cerevisiae.

Cell. 1981-11

[9]
A position effect in the control of transcription at yeast mating type loci.

Nature. 1981-1-22

[10]
Transposable mating type genes in Saccharomyces cerevisiae.

Nature. 1979-11-29

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