首页> 外文期刊>Journal of bacteriology >CTX Prophages in Classical Biotype Vibrio cholerae: Functional Phage Genes but Dysfunctional Phage Genomes
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CTX Prophages in Classical Biotype Vibrio cholerae: Functional Phage Genes but Dysfunctional Phage Genomes

机译:古典生物型霍乱弧菌中的CTX噬菌体:功能性噬菌体基因但功能异常的噬菌体基因组。

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CTXφ is a filamentous, lysogenic bacteriophage whose genome encodes cholera toxin, the primary virulence factor produced byVibrio cholerae. CTX prophages in O1 El Tor and O139 strains of V. cholerae are found within arrays of genetically related elements integrated at a single locus within theV. cholerae large chromosome. The prophages of O1 El Tor and O139 strains generally yield infectious CTXφ. In contrast, O1 classical strains of V. cholerae do not produce CTXφ, although they produce cholera toxin and they contain CTX prophages integrated at two sites. We have identified the second site of CTX prophage integration in O1 classical strains and characterized the classical prophage arrays genetically and functionally. The genes of classical prophages encode functional forms of all of the proteins needed for production of CTXφ. Classical CTX prophages are present either as solitary prophages or as arrays of two truncated, fused prophages. RS1, a genetic element that is closely related to CTXφ and is often interspersed with CTX prophages in El Tor strains, was not detected in classical V. cholerae. Our model for CTXφ production predicts that the CTX prophage arrangements in classical strains will not yield extrachromosomal CTX DNA and thus will not yield virions, and our experimental results confirm this prediction. Thus, failure of O1 classical strains ofV. cholerae to produce CTXφ is due to overall deficiencies in the structures of the arrays of classical prophages, rather than to mutations affecting individual CTX prophage genes.
机译:CTXφ是一种丝状溶原性噬菌体,其基因组编码霍乱毒素,这是霍乱弧菌产生的主要致病因子。在O1 El Tor和O139 V株中的CTX传播。霍乱位于 V内单个位点整合的遗传相关元件阵列中。霍乱大染色体。 O1 El Tor和O139菌株的原噬菌体通常产生感染性CTXφ。相比之下,O1经典株为 V。霍乱虽然产生霍乱毒素,并且含有整合在两个位点的CTX噬菌体,但它们不产生CTXφ。我们已经确定了O1经典菌株中CTX噬菌体整合的第二个位点,并从遗传和功能上表征了经典噬菌体阵列。经典原噬菌体的基因编码产生CTXφ所需的所有蛋白质的功能形式。经典的CTX预言既可以作为单独的预言,也可以作为两个截断融合的预言的数组存在。 RS1是与CTXφ密切相关的遗传元件,经常散布在El Tor菌株中的CTX噬菌体中,在经典 V中未检测到。霍乱。我们的CTXφ产生模型预测经典菌株中的CTX噬菌体排列不会产生染色体外CTX DNA,因此不会产生病毒体,我们的实验结果证实了这一预测。因此,O1经典株 V失败。产生霍乱弧菌的霍乱是由于经典原噬菌体阵列结构的总体缺陷,而不是由于影响单个CTX原噬菌体基因的突变。

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