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四个交配型基因控制裂殖酵母中的性别分化。

Four mating-type genes control sexual differentiation in the fission yeast.

作者信息

Kelly M, Burke J, Smith M, Klar A, Beach D

机构信息

Cold Spring Harbor Laboratory, NY 11724.

出版信息

EMBO J. 1988 May;7(5):1537-47. doi: 10.1002/j.1460-2075.1988.tb02973.x.

Abstract

The mating-type region of fission yeast consists of three components, mat1, mat2-P and mat3-M, each separated by 15 kb. Cell-type is determined by the alternate allele present at mat1, either P in an h+ or M in an h- cell. mat2-P and mat3-M serve as donors of information that is transposed to mat1 during a switch of mating type. We have determined the nucleotide sequence of each component of mat. The P and M specific regions are 1104 and 1128 bp, respectively, and bounded by sequences common to each mating-type cassette (H1; 59 bp and H2; 135 bp). A third sequence is present at mat2-P and mat3-M but absent at mat1 (H3; 57 bp), and may be involved in transcriptional repression of these cassettes. mat1-P and mat1-M each encode two genes (Pc; 118 amino acids, Pi; 159 amino acids, Mc; 181 amino acids and Mi; 42 amino acids). Introduction of opal or frame-shift mutations into the open-reading-frame of each gene revealed that Pc and Mc are necessary and sufficient for mating and confer an h+ or h- mating type respectively. All four genes are required for meiotic competence in an h+/h- diploid. The transcription of each mat gene is strongly influenced by nutritional conditions and full induction was observed only in nitrogen-free medium. The predicted product of the Pi gene contains a region of homology with the homeobox sequence, suggesting that this gene encodes a DNA binding protein that directly regulates the expression of other genes.

摘要

裂殖酵母的交配型区域由三个成分组成,即mat1、mat2-P和mat3-M,彼此相隔15 kb。细胞类型由mat1处存在的交替等位基因决定,在h+细胞中为P,在h-细胞中为M。mat2-P和mat3-M作为信息供体,在交配型转换期间转座到mat1。我们已经确定了mat各成分的核苷酸序列。P和M特异性区域分别为1104和1128 bp,由每个交配型盒共有的序列(H1;59 bp和H2;135 bp)界定。第三个序列存在于mat2-P和mat3-M,但在mat1处不存在(H3;57 bp),可能参与这些盒的转录抑制。mat1-P和mat1-M各自编码两个基因(Pc;118个氨基酸,Pi;159个氨基酸,Mc;181个氨基酸和Mi;42个氨基酸)。在每个基因的开放阅读框中引入乳白或移码突变表明,Pc和Mc对于交配是必需且充分的,分别赋予h+或h-交配型。所有四个基因对于h+/h-二倍体的减数分裂能力都是必需的。每个mat基因的转录受到营养条件的强烈影响,仅在无氮培养基中观察到完全诱导。Pi基因的预测产物包含与同源框序列同源的区域,表明该基因编码直接调节其他基因表达的DNA结合蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e745/458406/56619417d15c/emboj00142-0280-a.jpg

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