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新型隐球菌延伸因子3的进化分歧

Evolutionary divergence of an elongation factor 3 from Cryptococcus neoformans.

作者信息

Blakely G, Hekman J, Chakraburtty K, Williamson P R

机构信息

Division of Infectious Diseases, University of Illinois at Chicago College of Medicine, Chicago, Illinois 60612, USA.

出版信息

J Bacteriol. 2001 Apr;183(7):2241-8. doi: 10.1128/JB.183.7.2241-2248.2001.

Abstract

Elongation factor 3 (EF3) is considered a promising drug target for the control of fungal diseases because of its requirement for protein synthesis and survival of fungi and a lack of EF3 in the mammalian host. However, EF3 has been characterized only in ascomycete yeast. In order to understand the role of EF3 in a basidiomycete yeast, we cloned the gene encoding EF3 from Cryptococcus neoformans (CnEF3), an important fungal pathogen in immunocompromised patients, including those infected with human immunodeficiency virus. CnEF3 was found to encode a 1,055-amino-acid protein and has 44% identity with EF3 from Saccharomyces cerevisiae (YEF3). Expressed CnEF3 exhibited ATPase activity that was only modestly stimulated by ribosomes from S. cerevisiae. In contrast, CnEF3 showed tight binding to cryptococcal ribosomes, as shown by an inability to be removed under conditions which successfully remove Saccharomyces EF3 from ribosomes (0.5 M KCl or 2 M LiCl). CnEF3 also poorly complemented a YEF3 defect in a diploid null mutant and two temperature-sensitive mutants which have been shown previously to be complemented well by EF3 from other ascomycetes, such as Candida albicans. These data clearly identify the presence of a functioning EF3 in the basidiomycete yeast C. neoformans, which demonstrates an evolutionary divergence from EF3 of ascomycete yeast.

摘要

延伸因子3(EF3)被认为是控制真菌疾病的一个有前景的药物靶点,因为它对真菌的蛋白质合成和生存至关重要,而哺乳动物宿主中缺乏EF3。然而,EF3仅在子囊菌酵母中得到了表征。为了了解EF3在担子菌酵母中的作用,我们从新型隐球菌(CnEF3)中克隆了编码EF3的基因,新型隐球菌是免疫功能低下患者(包括感染人类免疫缺陷病毒的患者)中的一种重要真菌病原体。发现CnEF3编码一种1055个氨基酸的蛋白质,与酿酒酵母(YEF3)的EF3有44%的同一性。表达的CnEF3表现出ATP酶活性,该活性仅受到酿酒酵母核糖体的适度刺激。相比之下,CnEF3与隐球菌核糖体紧密结合,这表现为在能成功从核糖体上除去酿酒酵母EF3的条件下(0.5 M KCl或2 M LiCl)无法被除去。CnEF3在二倍体缺失突变体和两个温度敏感突变体中也不能很好地弥补YEF3缺陷,而之前已证明其他子囊菌(如白色念珠菌)的EF3能很好地弥补这些缺陷。这些数据清楚地表明担子菌酵母新型隐球菌中存在有功能的EF3,这证明了它与子囊菌酵母的EF3在进化上存在差异。

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