在肺炎链球菌和所有其他已知宿主中,Tn5253的染色体整合发生在rbgA基因保守的11bp序列的下游。

IF 4.7 2区 生物学 Q1 GENETICS & HEREDITY
Francesco Santoro, Valeria Fox, Alessandra Romeo, Elisa Lazzeri, Gianni Pozzi, Francesco Iannelli
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引用次数: 3

摘要

背景:Tn5253是一种携带tet(M)和猫耐药性决定因子的肺炎链球菌整合共轭元件(ICE),被发现可以(i)在特定的83-bp整合位点(attB)整合,(ii)产生由84-bp序列连接的圆形(attn),以及(iii)恢复染色体整合位点。本研究的目的是对不同遗传背景的肺炎链球菌和其他细菌中attB的功能特征进行表征,并研究Tn5253 attB位点在细菌基因组中的存在。结果:对不同遗传背景的肺炎链球菌及其他细菌种无乳链球菌、哥donii链球菌、化脓性链球菌、粪肠球菌中具有代表性的携带tn5253的转偶联物进行分析,结果表明:(i) Tn5253整合到肺炎链球菌的rbgA和其他细菌物种的同源rbgA基因中,(ii)整合总是发生在链球菌和肠球菌宿主之间保守的11-bp序列的下游,(iii) attB位点的长度与Tn5253整合后的复制长度相对应,(iv) attB复制恢复rbgA CDS。(v)根据细菌种类和菌株的不同,Tn5253产生含有attn位点的环状结构,其浓度在每条染色体2.0 × 10-5至1.2 × 10-2个拷贝之间;(vi) attB位点的重构发生在每条染色体3.7 × 10-5至1.7 × 10-2个拷贝之间。以Tn5253为探针对完整微生物基因组进行数据库检索,结果显示:(1)85个完整肺炎球菌基因组中存在13个attB变体,(2)75个肺炎球菌基因组(88.3%)中,attB位点长度为83或84个核苷酸,10个(11.7%)为41个核苷酸,(3)在其他19种细菌中,attB位于同源rbgA基因中,大小在17至84个核苷酸之间,(4)11-bp序列。它对应于attB位点的最后11个核苷酸,在不同的细菌物种中是保守的,可以被认为是Tn5253整合位点的核心。结论:对Tn5253 attB整合位点的功能表征结合基因组分析有助于阐明Tn5253在不同细菌物种间水平基因转移的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chromosomal integration of Tn5253 occurs downstream of a conserved 11-bp sequence of the rbgA gene in Streptococcus pneumoniae and in all the other known hosts of this integrative conjugative element (ICE).

Chromosomal integration of Tn5253 occurs downstream of a conserved 11-bp sequence of the rbgA gene in Streptococcus pneumoniae and in all the other known hosts of this integrative conjugative element (ICE).

Chromosomal integration of Tn5253 occurs downstream of a conserved 11-bp sequence of the rbgA gene in Streptococcus pneumoniae and in all the other known hosts of this integrative conjugative element (ICE).

Chromosomal integration of Tn5253 occurs downstream of a conserved 11-bp sequence of the rbgA gene in Streptococcus pneumoniae and in all the other known hosts of this integrative conjugative element (ICE).

Background: Tn5253, a composite Integrative Conjugative Element (ICE) of Streptococcus pneumoniae carrying tet(M) and cat resistance determinants, was found to (i) integrate at specific 83-bp integration site (attB), (ii) produce circular forms joined by a 84-bp sequence (attTn), and (iii) restore the chromosomal integration site. The purpose of this study is to functionally characterize the attB in S. pneumoniae strains with different genetic backgrounds and in other bacterial species, and to investigate the presence of Tn5253 attB site into bacterial genomes.

Results: Analysis of representative Tn5253-carryng transconjugants obtained in S. pneumoniae strains with different genetic backgrounds and in other bacterial species, namely Streptococcus agalactiae, Streptococcus gordonii, Streptococcus pyogenes, and Enterococcus faecalis showed that: (i) Tn5253 integrates in rbgA of S. pneumoniae and in orthologous rbgA genes of other bacterial species, (ii) integration occurs always downstream of a 11-bp sequence conserved among streptococcal and enterococcal hosts, (iii) length of the attB site corresponds to length of the duplication after Tn5253 integration, (iv) attB duplication restores rbgA CDS, (v) Tn5253 produced circular forms containing the attTn site at a concentration ranging between 2.0 × 10-5 to 1.2 × 10-2 copies per chromosome depending on bacterial species and strain, (vi) reconstitution of attB sites occurred at 3.7 × 10-5 to 1.7 × 10-2 copies per chromosome. A database search of complete microbial genomes using Tn5253 attB as a probe showed that (i) thirteen attB variants were present in the 85 complete pneumococcal genomes, (ii) in 75 pneumococcal genomes (88.3 %), the attB site was 83 or 84 nucleotides in length, while in 10 (11.7 %) it was 41 nucleotides, (iii) in other 19 bacterial species attB was located in orthologous rbgA genes and its size ranged between 17 and 84 nucleotides, (iv) the 11-bp sequence, which correspond to the last 11 nucleotides of attB sites, is conserved among the different bacterial species and can be considered the core of the Tn5253 integration site.

Conclusions: A functional characterization of the Tn5253 attB integration site combined with genome analysis contributed to elucidating the potential of Tn5253 horizontal gene transfer among different bacterial species.

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来源期刊
Mobile DNA
Mobile DNA GENETICS & HEREDITY-
CiteScore
8.20
自引率
6.10%
发文量
26
审稿时长
11 weeks
期刊介绍: Mobile DNA is an online, peer-reviewed, open access journal that publishes articles providing novel insights into DNA rearrangements in all organisms, ranging from transposition and other types of recombination mechanisms to patterns and processes of mobile element and host genome evolution. In addition, the journal will consider articles on the utility of mobile genetic elements in biotechnological methods and protocols.
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