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荚膜组织胞浆菌中罕见的同源基因靶向:通过等位基因置换破坏URA5Hc基因

Rare homologous gene targeting in Histoplasma capsulatum: disruption of the URA5Hc gene by allelic replacement.

作者信息

Woods J P, Retallack D M, Heinecke E L, Goldman W E

机构信息

Department of Medical Microbiology and Immunology, University of Wisconsin Medical School, Madison, Wisconsin 53706, USA

出版信息

J Bacteriol. 1998 Oct;180(19):5135-43. doi: 10.1128/JB.180.19.5135-5143.1998.

Abstract

URA5 genes encode orotidine-5'-monophosphate pyrophosphorylase (OMPpase), an enzyme involved in pyrimidine biosynthesis. We cloned the Histoplasma capsulatum URA5 gene (URA5Hc) by using a probe generated by PCR with inosine-rich primers based on relatively conserved sequences in OMPpases from other organisms. Transformation with this gene restored uracil prototrophy and OMPpase activity to UV-mutagenized ura5 strains of H. capsulatum. We attempted to target the genomic URA5 locus in this haploid organism to demonstrate homologous allelic replacement with transforming DNA, which has not been previously done in H. capsulatum and has been challenging in some other pathogenic fungi. Several strategies commonly used in Saccharomyces cerevisiae and other eukaryotes were unsuccessful, due to the frequent occurrence of ectopic integration, linear plasmid formation, and spontaneous resistance to 5-fluoroorotic acid, which is a selective agent for URA5 gene inactivation. Recent development of an efficient electrotransformation system and of a second selectable marker (hph, conferring hygromycin B resistance) for this fungus enabled us to achieve allelic replacement by using transformation with an insertionally inactivated Deltaura5Hc::hph plasmid, followed by dual selection with hygromycin B and 5-fluoroorotic acid, or by screening hygromycin B-resistant transformants for uracil auxotrophy. The relative frequency of homologous gene targeting was approximately one allelic replacement event per thousand transformants. This work demonstrates the feasibility but also the potential challenge of gene disruption in this organism. To our knowledge, it represents the first example of experimentally directed allelic replacement in H. capsulatum, or in any dimorphic systemic fungal pathogen of humans.

摘要

URA5基因编码乳清苷-5'-单磷酸焦磷酸化酶(OMPpase),这是一种参与嘧啶生物合成的酶。我们基于其他生物体中OMPpases的相对保守序列,使用富含次黄嘌呤的引物通过PCR生成探针,克隆了荚膜组织胞浆菌的URA5基因(URA5Hc)。用该基因转化可使紫外线诱变的荚膜组织胞浆菌ura5菌株恢复尿嘧啶原养型和OMPpase活性。我们试图在这种单倍体生物体中靶向基因组URA5位点,以证明转化DNA的同源等位基因替换,此前在荚膜组织胞浆菌中尚未进行过此类操作,在其他一些致病真菌中也颇具挑战性。由于异位整合、线性质粒形成以及对5-氟乳清酸(URA5基因失活的选择剂)的自发抗性频繁发生,酿酒酵母和其他真核生物中常用的几种策略均未成功。该真菌高效电转化系统和第二个选择标记(hph,赋予潮霉素B抗性)的最新进展使我们能够通过用插入失活的Deltaura5Hc::hph质粒进行转化,随后用潮霉素B和5-氟乳清酸进行双重选择,或通过筛选潮霉素B抗性转化体的尿嘧啶营养缺陷型来实现等位基因替换。同源基因靶向的相对频率约为每千个转化体中有一个等位基因替换事件。这项工作证明了在该生物体中进行基因破坏的可行性,但也存在潜在挑战。据我们所知,这代表了荚膜组织胞浆菌或任何人类双态性系统性真菌病原体中实验指导的等位基因替换的首个实例。

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