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鉴定酵母HO基因谱系特异性转录所需的不对称定位决定因子Ash1p。

Identification of asymmetrically localized determinant, Ash1p, required for lineage-specific transcription of the yeast HO gene.

作者信息

Sil A, Herskowitz I

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco, 94143-0448 USA.

出版信息

Cell. 1996 Mar 8;84(5):711-22. doi: 10.1016/s0092-8674(00)81049-1.

Abstract

S. cerevisiae cells exhibit asymmetric determination of cell fate. Cell division yields a mother cell, which is competent to transcribe the HO gene and switch mating type, and a daughter cell, which is not. We have isolated a mutant in which daughters transcribe HO and switch mating type. This mutation defines the ASH1 gene (asymmetric synthesis of HO). Deletion and overexpression of ASH1 cause reciprocal cell fate transformations: im ash1delta strains, daughters switch mating type as efficiently as mothers. Conversely, overexpression of ASH1 inhibits switching in mother cells. Ash1p has a zinc finger motif related to those of GATA transcriptional regulators. Ash1p is localized to the daughter nucleus in cells that have undergone nuclear division. Thus, Ash1p is a cell fate determinant that is asymmetrically localized to the daughter nucleus where it inhibits HO transcription.

摘要

酿酒酵母细胞表现出细胞命运的不对称决定。细胞分裂产生一个母细胞,它能够转录HO基因并转换交配型,以及一个子细胞,子细胞则不能。我们分离出了一个突变体,其中子细胞能够转录HO并转换交配型。这个突变定义了ASH1基因(HO的不对称合成)。ASH1的缺失和过表达会导致相反的细胞命运转变:在缺失ASH1的菌株中,子细胞转换交配型的效率与母细胞一样高。相反,ASH1的过表达会抑制母细胞中的转换。Ash1p具有与GATA转录调节因子相关的锌指基序。Ash1p在经历核分裂的细胞中定位于子细胞核。因此,Ash1p是一种细胞命运决定因子,它不对称地定位于子细胞核,在那里它抑制HO转录。

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