Stx2a噬菌体志贺毒素操纵子侧翼区域的特征揭示了NanS-p唾液酸o -乙酰酯酶基因的多样性。

IF 2.7 Q3 MICROBIOLOGY AIMS Microbiology Pub Date : 2023-01-01 DOI:10.3934/microbiol.2023030
Stefanía B Pascal, Ramiro Lorenzo, María Victoria Nieto Farías, John W A Rossen, Paula M A Lucchesi, Alejandra Krüger
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引用次数: 0

摘要

产志贺毒素大肠杆菌(STEC)是致泻菌株,可引起血性腹泻和溶血性尿毒症综合征。它们的主要毒力因子志贺毒素(Stx)是由整合到细菌染色体中的噬菌体编码的。Stx噬菌体种类繁多,携带许多功能有限或未知的基因。由于毒素亚型Stx2a与高致病性菌株相关,本研究主要对Stx2a噬菌体stx侧翼区进行表征。特别令人感兴趣的是唾液酸o -乙酰酯酶(NanS-p),该酶先前被描述为在一些噬菌体基因组中编码下游stx,并可能赋予STEC生长优势。从GenBank数据库中检索Stx2a噬菌体和噬菌体的完整DNA序列,并对从抗终止子Q到holin S基因的基因组区域进行生物信息学分析。对编码其他Stx亚型的噬菌体预测的NanSp序列也进行了研究。此外,采用qPCR方法对我们实验室收集的菌株中nanS-p的表达进行定量分析。Stx2a噬菌体基因组分析结果显示,它们均携带Q、Stx2a、nanS-p和S基因,但存在等位基因多样性等序列差异。特别是,在Stx2a噬菌体和其他Stx噬菌体编码的NanS-p酯酶的三个结构域中,每一个都检测到序列差异;然而,在分析的Stx2e、Stx2f和Stx2g噬菌体中未发现nanS-p。在噬菌体诱导条件下,大多数stx2a阳性菌株中nanS-p的表达增加,正如之前在stx2a中所显示的那样。由于目前的研究表明,在不同的Stx噬菌体中,Q-S区存在多样性,尤其是在编码的NanS-p酶中,未来的研究将有必要评估NanS-p变体的活性是否存在差异,并评估某些Stx噬菌体中缺乏NanS-p的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Characterization of the flanking region of the Shiga toxin operon in Stx2a bacteriophages reveals a diversity of the NanS-p sialate O-acetylesterase gene.

Shiga toxin-producing E. coli (STEC) are diarrheagenic strains that can cause bloody diarrhea and hemolytic-uremic syndrome. Their main virulence factor, the Shiga toxin (Stx), is encoded by phages integrated into the bacterial chromosome. Stx phages are widely diverse and carry many genes with limited or unknown function. As the toxin subtype Stx2a is associated with highly pathogenic strains, this study was mainly focused on the characterization of the stx flanking region of Stx2a phages. Of particular interest was a sialate O-acetylesterase (NanS-p), which has been described previously to be encoded downstream stx in some phage genomes and may confer a growth advantage for STEC. Complete DNA sequences of Stx2a phages and prophages were retrieved from the GenBank database, and the genomic regions from anti-terminator Q to holin S genes were bioinformatically analyzed. Predicted NanSp sequences from phages encoding other Stx subtypes were also studied. Additionally, expression of nanS-p was quantified by qPCR in strains selected from our laboratory collection. The analysis of Stx2a phage genomes showed that all carried the Q, stx2a, nanS-p and S genes, but with allele diversity and other sequence differences. In particular, sequence differences were detected in each of the three domains of NanS-p esterases encoded by Stx2a phages and other Stx phages; however, nanS-p was not identified in the Stx2e, Stx2f and Stx2g phages analyzed. The expression of nanS-p increased in most stx2a-positive strains under phage inducing conditions, as was previously shown for stx2a. As the present work showed diversity at the Q-S region among Stx phages, and particularly in the encoded NanS-p enzyme, future studies will be necessary to evaluate if NanS-p variants differ in their activity and to assess the impact of the absence of nanS-p in certain Stx phages.

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来源期刊
AIMS Microbiology
AIMS Microbiology MICROBIOLOGY-
CiteScore
7.00
自引率
2.10%
发文量
22
审稿时长
8 weeks
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