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一种参与玉米赤霉有性发育和致病过程的新型F-box蛋白。

A novel F-box protein involved in sexual development and pathogenesis in Gibberella zeae.

作者信息

Han You-Kyoung, Kim Myoung-Dong, Lee Seung-Ho, Yun Sung-Hwan, Lee Yin-Won

机构信息

School of Agricultural Biotechnology and Center for Agricultural Biomaterials, Seoul National University, Seoul 151-921, Korea.

出版信息

Mol Microbiol. 2007 Feb;63(3):768-79. doi: 10.1111/j.1365-2958.2006.05557.x.

Abstract

Gibberella zeae is an ascomyceteous fungus that causes serious diseases in cereal crops. Severe epidemics require strains that are virulent and that can reproduce sexually. We characterized an insertional mutant (designated ZH436) with a pleiotropic defect in both traits, and identified a novel F-box protein gene encoding FBP1 (F-box protein 1) that is similar to fungal F-box proteins including Saccharomyces cerevisiae Grr1, a well-characterized component of the Skp1-Cullin-F-box protein (SCF(Grr1)) E3 ligase complex required for protein degradation. FBP1 also can bind both S. cerevisiae Skp1 protein, the other component of the SCF(Grr1) complex, and its G. zeae sequence homologue SKP1. Two putative protein interacting domains in FBP1 are essential for in vivo function. FBP1 and ScGRR1 are not so interchangeable between S. cerevisiae and G. zeae, but FBP1 can partially complement several defects of a yeast grr1 deletion mutant. Functional analyses confirmed that FBP1 is required for several phenotypes including both sexual development and virulence in G. zeae; the phenotype of DeltaFBP1 strains is different from those of null mutants for F-box proteins in other filamentous fungi as well as from S. cerevisiae grr1Delta strains. Thus, FBP1 is a versatile F-box protein that presumably participates in the formation of the SCF(FBP1) complex that probably controls the ubiquitin-mediated degradation of proteins involved in sexual reproduction and virulence important for disease development by G. zeae.

摘要

玉米赤霉是一种子囊菌真菌,可在谷类作物中引发严重病害。严重的流行病需要毒性强且能进行有性繁殖的菌株。我们对一个在这两个性状上都存在多效性缺陷的插入突变体(命名为ZH436)进行了表征,并鉴定出一个编码FBP1(F-box蛋白1)的新型F-box蛋白基因,该基因与包括酿酒酵母Grr1在内的真菌F-box蛋白相似,Grr1是蛋白质降解所需的Skp1-Cullin-F-box蛋白(SCF(Grr1))E3连接酶复合物的一个特征明确的组分。FBP1还能与SCF(Grr1)复合物的另一个组分酿酒酵母Skp1蛋白及其玉米赤霉序列同源物SKP1结合。FBP1中的两个假定的蛋白质相互作用结构域对其体内功能至关重要。FBP1和ScGRR1在酿酒酵母和玉米赤霉之间并非完全可互换,但FBP1可部分弥补酵母grr1缺失突变体的几种缺陷。功能分析证实,FBP1是玉米赤霉中包括有性发育和毒性在内的几种表型所必需的;DeltaFBP1菌株的表型不同于其他丝状真菌中F-box蛋白的缺失突变体以及酿酒酵母grr1Delta菌株的表型。因此,FBP1是一种多功能的F-box蛋白,可能参与了SCF(FBP1)复合物的形成,该复合物可能控制着泛素介导的对参与有性生殖和毒性的蛋白质的降解,而有性生殖和毒性对玉米赤霉病害的发展很重要。

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