首页> 美国卫生研究院文献>Journal of Bacteriology >Phenotypic Mutants of the Intracellular Actinomycete Rhodococcus equi Created by In Vivo Himar1 Transposon Mutagenesis
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Phenotypic Mutants of the Intracellular Actinomycete Rhodococcus equi Created by In Vivo Himar1 Transposon Mutagenesis

机译:由体内Himar1转座子诱变创建的细胞内放线菌马红球菌的表型突变体。

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摘要

Rhodococcus equi is a facultative intracellular opportunistic pathogen of immunocompromised people and a major cause of pneumonia in young horses. An effective live attenuated vaccine would be extremely useful in the prevention of R. equi disease in horses. Toward that end, we have developed an efficient transposon mutagenesis system that makes use of a Himar1 minitransposon delivered by a conditionally replicating plasmid for construction of R. equi mutants. We show that Himar1 transposition in R. equi is random and needs no apparent consensus sequence beyond the required TA dinucleotide. The diversity of the transposon library was demonstrated by the ease with which we were able to screen for auxotrophs and mutants with pigmentation and capsular phenotypes. One of the pigmentation mutants contained an insertion in a gene encoding phytoene desaturase, an enzyme of carotenoid biosynthesis, the pathway necessary for production of the characteristic salmon color of R. equi. We identified an auxotrophic mutant with a transposon insertion in the gene encoding a putative dual-functioning GTP cyclohydrolase II-3,4-dihydroxy-2-butanone-4-phosphate synthase, an enzyme essential for riboflavin biosynthesis. This mutant cannot grow in minimal medium in the absence of riboflavin supplementation. Experimental murine infection studies showed that, in contrast to wild-type R. equi, the riboflavin-requiring mutant is attenuated because it is unable to replicate in vivo. The mutagenesis methodology we have developed will allow the characterization of R. equi virulence mechanisms and the creation of other attenuated strains with vaccine potential.
机译:马红球菌是免疫功能低下的人的兼性细胞内机会病原体,是幼马肺炎的主要原因。一种有效的减毒活疫苗在预防马匹马瘟中将非常有用。为此,我们开发了一种有效的转座子诱变系统,该系统利用通过条件复制质粒递送的Himar1小型转座子构建马等体突变体。我们显示,在马鞭草中的Himar1转座是随机的,不需要明显的共有序列,而所需的TA二核苷酸除外。转座子文库的多样性通过我们能够轻松筛选营养缺陷型和具有色素沉着和荚膜表型的突变体来证明。一种色素沉着突变体在编码八氢番茄红素去饱和酶(类胡萝卜素生物合成的酶)的基因中包含一个插入,该基因是产生马齿。的特征鲑鱼颜色所必需的途径。我们确定了一个营养缺陷型突变体,该突变体在编码推定的双功能GTP环水解酶II-3,4-二羟基-2-丁酮-4-磷酸合酶(核黄素生物合成必不可少的酶)的基因中具有转座子插入。在缺乏核黄素补充的情况下,该突变体无法在基本培养基中生长。实验性鼠类感染研究表明,与野生型马鞭毛虫不同,需要核黄素的突变体由于无法在体内复制而被减弱。我们已经开发出的诱变方法将能够表征马立克氏杆菌的毒力机制并创建具有疫苗潜力的其他减毒株。

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