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粟酒裂殖酵母中mat1基因座对减数分裂的两步激活。

Two-step activation of meiosis by the mat1 locus in Schizosaccharomyces pombe.

作者信息

Willer M, Hoffmann L, Styrkársdóttir U, Egel R, Davey J, Nielsen O

机构信息

Department of Genetics, University of Copenhagen, Denmark.

出版信息

Mol Cell Biol. 1995 Sep;15(9):4964-70. doi: 10.1128/MCB.15.9.4964.

Abstract

The mat1 locus is a key regulator of both conjugation and meiosis in the fission yeast Schizosaccharomyces pombe. Two alternative DNA segments of this locus, mat1-P and mat1-M, specify the haploid cell types (Plus and Minus). Each segment includes two genes: mat1-P includes mat1-Pc and mat1-Pm, while mat1-M includes mat1-Mc and mat1-Mm. The mat1-Pc and mat1-Mc genes are responsible for establishing the pheromone communication system that mediates conjugation between P and M cells, while all four mat1 genes are required for meiosis in diploid P/M cells. Our understanding of the initiation of meiosis is based largely on indirect observations, and a more precise investigation of these events was required to define the interaction between the mat1 genes. Here we resolve this issue using synthetic pheromones and P/M strains with mutations in either mat1-Pc or mat1-Mc. Our results suggest a model in which the mat1 locus plays two roles in controlling meiosis. In the first instance, the mat1-Pc and mat1-Mc functions are required to produce the mating pheromones and receptors that allow the generation of a pheromone signal. This signal is required to induce the expression of mat1-Pm and mat1-Mm. This appears to be the major pheromone-dependent step in controlling meiosis since ectopic expression of these genes allows meiosis in the absence of mat1-Pc and mat1-Mc. The mat1-Pm and mat1-Mm products complete the initiation of meiosis by activating transcription of the mei3 gene.

摘要

mat1位点是裂殖酵母粟酒裂殖酵母中接合和减数分裂的关键调节因子。该位点的两个替代DNA片段,mat1-P和mat1-M,决定了单倍体细胞类型(正和负)。每个片段包含两个基因:mat1-P包含mat1-Pc和mat1-Pm,而mat1-M包含mat1-Mc和mat1-Mm。mat1-Pc和mat1-Mc基因负责建立介导P细胞和M细胞之间接合的信息素通讯系统,而所有四个mat1基因是二倍体P/M细胞减数分裂所必需的。我们对减数分裂起始的理解很大程度上基于间接观察,需要对这些事件进行更精确的研究来确定mat1基因之间的相互作用。在这里,我们使用合成信息素和mat1-Pc或mat1-Mc发生突变的P/M菌株解决了这个问题。我们的结果提出了一个模型,其中mat1位点在控制减数分裂中起两个作用。首先,mat1-Pc和mat1-Mc的功能是产生允许产生信息素信号的交配信息素和受体。这个信号是诱导mat1-Pm和mat1-Mm表达所必需的。这似乎是控制减数分裂中主要的信息素依赖步骤,因为这些基因的异位表达允许在没有mat1-Pc和mat1-Mc的情况下进行减数分裂。mat1-Pm和mat1-Mm产物通过激活mei3基因的转录完成减数分裂的起始。

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