Cox G M, Toffaletti D L, Perfect J R
Department of Medicine, Duke University Medical Center, Durham, NC 27710, USA.
J Med Vet Mycol. 1996 Nov-Dec;34(6):385-91.
Present transformation systems for Cryptococcus neoformans depend on complementation of auxotrophic mutants. We have developed a dominant selection system for transformation of wild-type strains of cryptococci in which resistance to the antibiotic hygromycin B is used as the selectable marker. A heterologous fusion gene construct was created by attaching the putative promoter sequence and start site from a cryptococcal actin gene to a truncated hygromycin B phosphotransferase gene from E. coli. Biolistic transformation with this construct resulted in cryptococci resistant to hygromycin B, and transformation efficiencies approached approximately 500 transformants per microgram DNA. The construct was found to exist in transformants as both extrachromosomal and integrative forms. The transformants with integrated constructs were stable both in vitro and in vivo, and constructs were recoverable from most transformed cells using a plasmid rescue technique. This is the first dominant selection system for use in C. neoformans, and it should prove useful for molecular studies with this important pathogenic yeast.
目前新型隐球菌的转化系统依赖于营养缺陷型突变体的互补作用。我们开发了一种用于隐球菌野生型菌株转化的显性选择系统,其中对潮霉素B的抗性被用作选择标记。通过将来自隐球菌肌动蛋白基因的推定启动子序列和起始位点与来自大肠杆菌的截短潮霉素B磷酸转移酶基因连接,构建了一个异源融合基因构建体。用该构建体进行基因枪转化产生了对潮霉素B有抗性的隐球菌,转化效率接近每微克DNA约500个转化体。发现该构建体以染色体外和整合形式存在于转化体中。具有整合构建体的转化体在体外和体内均稳定,并且使用质粒拯救技术可从大多数转化细胞中回收构建体。这是第一个用于新型隐球菌的显性选择系统,它应该对这种重要致病酵母的分子研究有用。