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种间差异揭示了酿酒酵母中α特异性基因的保守阻遏物。

Interspecies variation reveals a conserved repressor of alpha-specific genes in Saccharomyces yeasts.

作者信息

Zill Oliver A, Rine Jasper

机构信息

Department of Molecular and Cell Biology, University of California at Berkeley, Berkeley, CA 94720, USA.

出版信息

Genes Dev. 2008 Jun 15;22(12):1704-16. doi: 10.1101/gad.1640008.

Abstract

The mating-type determination circuit in Saccharomyces yeast serves as a classic paradigm for the genetic control of cell type in all eukaryotes. Using comparative genetics, we discovered a central and conserved, yet previously undetected, component of this genetic circuit: active repression of alpha-specific genes in a cells. Upon inactivation of the SUM1 gene in Saccharomyces bayanus, a close relative of Saccharomyces cerevisiae, a cells acquired mating characteristics of alpha cells and displayed autocrine activation of their mating response pathway. Sum1 protein bound to the promoters of alpha-specific genes, repressing their transcription. In contrast to the standard model, alpha1 was important but not required for alpha-specific gene activation and mating of alpha cells in the absence of Sum1. Neither Sum1 protein expression, nor its association with target promoters was mating-type-regulated. Thus, the alpha1/Mcm1 coactivators did not overcome repression by occluding Sum1 binding to DNA. Surprisingly, the mating-type regulatory function of Sum1 was conserved in S. cerevisiae. We suggest that a comprehensive understanding of some genetic pathways may be best attained through the expanded phenotypic space provided by study of those pathways in multiple related organisms.

摘要

酿酒酵母中的交配型决定电路是所有真核生物中细胞类型遗传控制的经典范例。通过比较遗传学,我们发现了这个遗传电路的一个核心且保守但以前未被检测到的组成部分:a细胞中α特异性基因的活性抑制。在酿酒酵母的近亲贝酵母中,SUM1基因失活后,a细胞获得了α细胞的交配特征,并表现出其交配反应途径的自分泌激活。Sum1蛋白与α特异性基因的启动子结合,抑制它们的转录。与标准模型相反,在没有Sum1的情况下,α1对于α特异性基因激活和α细胞交配很重要但不是必需的。Sum1蛋白表达及其与靶启动子的关联都不受交配型调控。因此,α1/Mcm1共激活因子不会通过阻止Sum1与DNA结合来克服抑制作用。令人惊讶的是,Sum1的交配型调节功能在酿酒酵母中是保守的。我们认为,通过研究多个相关生物体中的那些途径所提供的扩展表型空间,可能最好地实现对某些遗传途径的全面理解。

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