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一种嵌合型同源结构域蛋白导致灰盖鬼伞蘑菇具备自交亲和性和组成型有性发育。

A chimeric homeodomain protein causes self-compatibility and constitutive sexual development in the mushroom Coprinus cinereus.

作者信息

Kües U, Göttgens B, Stratmann R, Richardson W V, O'Shea S F, Casselton L A

机构信息

Department of Plant Sciences, University of Oxford, UK.

出版信息

EMBO J. 1994 Sep 1;13(17):4054-9. doi: 10.1002/j.1460-2075.1994.tb06722.x.

Abstract

The A mating type genes of the mushroom Coprinus cinereus encode two classes of putative transcription factor with distinctive homeodomain motifs (HD1 and HD2). A successful mating brings together different allelic forms of these genes and this triggers part of a developmental sequence required for sexual reproduction. In this report we provide evidence that this developmental programme is promoted by a physical interaction between the two classes of homeodomain protein. Rare dominant mutations conferring self-compatibility map to the A locus and result in constitutive operation of the A-regulated developmental pathway. Our molecular analysis of one of these mutations shows that it has generated a chimeric gene by inframe fusion of an HD2 and an HD1 gene. Fusion has overcome the normal incompatibility between two proteins coded by genes of the same A locus and generated a protein that is sufficient to promote development in the absence of any other active A mating type genes. The fusion protein retains most of the HD2 sequence, but only the C-terminal part of the HD1 protein. It has only the HD2 homeodomain motif as a potential DNA binding domain fused to an essential C-terminal region of the HD1 protein, which in a normal HD1-HD2 protein complex may be the major activation domain.

摘要

灰盖鬼伞的A交配型基因编码两类具有独特同源结构域基序(HD1和HD2)的假定转录因子。成功的交配会使这些基因的不同等位基因形式聚集在一起,这触发了有性生殖所需发育序列的一部分。在本报告中,我们提供证据表明,这一发育程序是由两类同源结构域蛋白之间的物理相互作用所促进的。赋予自交亲和性的罕见显性突变定位于A位点,并导致A调控的发育途径的组成型运作。我们对其中一个突变的分子分析表明,它通过HD2基因和HD1基因的读框内融合产生了一个嵌合基因。融合克服了由同一A位点基因编码的两种蛋白质之间的正常不亲和性,并产生了一种在没有任何其他活性A交配型基因的情况下足以促进发育的蛋白质。融合蛋白保留了大部分HD2序列,但只保留了HD1蛋白的C末端部分。它只有HD2同源结构域基序作为潜在的DNA结合结构域,与HD1蛋白的一个必需的C末端区域融合,在正常的HD1 - HD2蛋白复合物中,该区域可能是主要的激活结构域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d9d/395326/2fe721496786/emboj00065-0137-a.jpg

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