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一种与人类视网膜母细胞瘤结合蛋白2具有相似性的蛋白质,在玉米黑粉菌中作为b交配型位点调控基因的特异性阻遏物发挥作用。

A protein with similarity to the human retinoblastoma binding protein 2 acts specifically as a repressor for genes regulated by the b mating type locus in Ustilago maydis.

作者信息

Quadbeck-Seeger C, Wanner G, Huber S, Kahmann R, Kämper J

机构信息

Institut für Genetik und Mikrobiologie, Ludwig-Maximilians-Universität München, Maria-Ward-Strasse 1a, D-80638 München, Germany.

出版信息

Mol Microbiol. 2000 Oct;38(1):154-66. doi: 10.1046/j.1365-2958.2000.02128.x.

DOI:10.1046/j.1365-2958.2000.02128.x
PMID:11029697
Abstract

Pathogenic development in the corn smut fungus Ustilago maydis is controlled by a heterodimer of the two homeodomain proteins bE and bW which are encoded by the b mating type locus. The bE/bW heterodimer is thought to achieve its function as a transcriptional regulator of pathogenicity genes, either directly by binding to cis regulatory sequences or indirectly via a b-dependent regulatory cascade. In a screen for components of the b-dependent regulatory cascade we have isolated Rum1 (regulator U. maydis 1), a protein with similarities to the human retinoblastoma binding protein 2. Deletion of rum1 results in expression of several b regulated genes independently from their activation via the bE/bW heterodimer. rum1 mutant strains remain pathogenic, proliferate in planta, but fail to produce spores. The defect leads to an arrest in spore development at a defined stage before the spore wall is generated. Deduced from the highly conserved domain structure of Rum1 that includes a DNA-binding motif and a region known to facilitate the interaction with histone deacetylases, we propose that Rum1 functions as a transcriptional repressor through the modulation of chromatin structure.

摘要

玉米黑粉菌Ustilago maydis的致病发育由两个同源异型域蛋白bE和bW的异二聚体控制,这两个蛋白由b交配型位点编码。bE/bW异二聚体被认为作为致病基因的转录调节因子发挥作用,要么直接通过与顺式调节序列结合,要么间接通过b依赖的调节级联反应。在对b依赖的调节级联反应成分的筛选中,我们分离出了Rum1(玉米黑粉菌调节因子1),一种与人类视网膜母细胞瘤结合蛋白2相似的蛋白质。rum1的缺失导致几个b调节基因的表达,而不依赖于它们通过bE/bW异二聚体的激活。rum1突变菌株仍具致病性,能在植物中增殖,但不能产生孢子。该缺陷导致孢子发育在产生孢子壁之前的特定阶段停滞。从Rum1高度保守的结构域结构推断,其包括一个DNA结合基序和一个已知有助于与组蛋白脱乙酰酶相互作用的区域,我们提出Rum1通过调节染色质结构作为转录抑制因子发挥作用。

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