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. 2004 Feb;186(4):1106-9.
doi: 10.1128/JB.186.4.1106-1109.2004.

ISSa4-based differentiation of Streptococcus agalactiae strains and identification of multiple target sites for ISSa4 insertions

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ISSa4-based differentiation of Streptococcus agalactiae strains and identification of multiple target sites for ISSa4 insertions

Alexander Dmitriev et al. J Bacteriol. 2004 Feb.

Abstract

A collection of 113 epidemiologically unrelated Streptococcus agalactiae strains were studied (group B streptococcus; GBS): they belonged to different serotypes and were isolated from pregnant women in China and Russia. The insertion sequence ISSa4 was found in 21 of 113 strains (18,6%). All of the strains with ISSa4 belonged to serotypes II and II/c and were characterized by the presence of IS1381 and IS861 as well as the absence of IS1548 and GBSi1. All of the strains with ISSa4 possessed both bca and bac virulence genes coding for alpha and beta antigens, respectively. Among 21 ISSa4-positive strains, 13 different HindIII patterns (D1 to D13) hybridizing with an ISSa4 probe were found. One of them (D13) contained a single HindIII hybridization fragment 6.5 kb in size that was found to be specific for all ISSa4-positive GBS strains. Multiple target sites for insertions of ISSa4 were identified and included a putative pathogenicity island, "housekeeping" genes, and intergenic regions, as well as the genes for hypothetical proteins. No significant similarity was observed in the sequences of the target genes for ISSa4 insertions, in the relative location of the target genes on the chromosome, or the biological functions of the encoded proteins. The possible significance of ISSa4-based differentiation of the strains and the presence of possible "hot spots" for insertions of ISSa4 in GBS genome are discussed.

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Figures

FIG. 1.
FIG. 1.
HindIII hybridization patterns with the ISSa4 probe. Lanes 1 to 13 correspond to D1 to D13 HindIII hybridization patterns with ISSa4 probe, respectively. The λ HindIII molecular size marker is shown on the left.

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