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白色念珠菌中编码泛素杂交蛋白的UBI3基因的分子克隆与特性分析。

Molecular cloning and characterization of the Candida albicans UBI3 gene coding for a ubiquitin-hybrid protein.

作者信息

Roig P, Martínez J P, Gil M L, Gozalbo D

机构信息

Departament de Microbiologia i Ecologia, Facultat de Farmàcia, Universitat de València, Avgda. Vicent Andrés Estellés s/n, 46100-Burjassot (València), Spain.

出版信息

Yeast. 2000 Nov;16(15):1413-9. doi: 10.1002/1097-0061(200011)16:15<1413::AID-YEA632>3.0.CO;2-U.

Abstract

Using a polyubiquitin cDNA as a probe, we have isolated a clone (pPR3, a pEMBLYe23 derivative plasmid) containing the Candida albicans UBI3 gene coding for a fusion protein. This protein is formed by one ubiquitin subunit fused, at its C-terminus, to an unrelated peptide which is similar to the ribosomal protein encoded by the 3' tail of the Saccharomyces cerevisiae UBI3 gene. Southern blot analysis of chromosomal DNA probed with the 3' non-ubiquitin tail of UBI3 indicated that only one homologous gene is present in the C. albicans genome. Heterelogous expression of pPR3 in a S. cerevisiae ubi3 mutant strain complements the mutant phenotype (slow growth) conferred by the ubi3 defect; this provides direct evidence indicating that the clone contains the C. albicans UBI3 gene Northern blot analysis showed that UBI3 gene is expressed in yeast and germ-tube cells of C. albicans, although the UBI3 mRNA levels in starved yeast cells are below the detection limit; UBI3 mRNA drops to undetectable levels on shifting the temperature of growing yeast cells from 28 degrees C to 42 degrees C. When Northern blot analysis was performed using a specific probe for the polyubiquitin (UBI4) gene, no drop in the mRNA levels was detected following thermal upshift or in starved cells. These results indicate that stress conditions (starvation or thermal upshift) negatively regulate UBI3 expression (transcriptional arrest and/or enhanced mRNA decay), and suggest that UBI4 gene provides ubiquitin during the stress response. In addition, we failed to obtain C. albicans UBI3 null mutant cells by sequential disruption of both alleles using the hisG::URA3::hisG ('ura-blaster') cassette, suggesting that null mutants cells may be unable to grow on selective media after transformation.

摘要

我们以多聚泛素cDNA作为探针,分离出了一个克隆(pPR3,一种pEMBLYe23衍生质粒),它含有编码融合蛋白的白色念珠菌UBI3基因。该蛋白由一个泛素亚基在其C末端与一个不相关的肽融合而成,这个肽类似于酿酒酵母UBI3基因3'末端编码的核糖体蛋白。用UBI3的3'非泛素尾对染色体DNA进行Southern印迹分析表明,白色念珠菌基因组中仅存在一个同源基因。pPR3在酿酒酵母ubi3突变株中的异源表达弥补了ubi3缺陷赋予的突变表型(生长缓慢);这提供了直接证据表明该克隆包含白色念珠菌UBI3基因。Northern印迹分析表明,UBI3基因在白色念珠菌的酵母细胞和芽管细胞中表达,尽管饥饿酵母细胞中的UBI3 mRNA水平低于检测限;当将生长中的酵母细胞温度从28℃升至42℃时,UBI3 mRNA降至不可检测水平。当使用多聚泛素(UBI4)基因的特异性探针进行Northern印迹分析时,在温度升高或饥饿细胞中未检测到mRNA水平下降。这些结果表明应激条件(饥饿或温度升高)对UBI3表达产生负调控(转录停滞和/或mRNA降解增强),并表明UBI4基因在应激反应期间提供泛素。此外,我们未能通过使用hisG::URA3::hisG(“ura - 爆破器”)盒依次破坏两个等位基因来获得白色念珠菌UBI3缺失突变细胞,这表明缺失突变细胞在转化后可能无法在选择培养基上生长。

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