Role of the Single-Stranded DNA-Binding Protein SsbB in Pneumococcal Transformation: Maintenance of a Reservoir for Genetic Plasticity

被引:82
作者
Attaiech, Laetitia [1 ,2 ]
Olivier, Audrey [1 ,2 ]
Mortier-Barriere, Isabelle [1 ,2 ]
Soulet, Anne-Lise [1 ,2 ]
Granadel, Chantal [1 ,2 ]
Martin, Bernard [1 ,2 ]
Polard, Patrice [1 ,2 ]
Claverys, Jean-Pierre [1 ,2 ]
机构
[1] CNRS, LMGM UMR5100, Toulouse, France
[2] Univ Toulouse, UPS, Lab Microbiol & Genet Mol, Toulouse, France
关键词
STREPTOCOCCUS-PNEUMONIAE; DONOR DNA; COMPETENCE; IDENTIFICATION; FRATRICIDE; EXPRESSION; PLASMIDS; REGULONS; STRAINS; STRESS;
D O I
10.1371/journal.pgen.1002156
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Bacteria encode a single-stranded DNA (ssDNA) binding protein (SSB) crucial for genome maintenance. In Bacillus subtilis and Streptococcus pneumoniae, an alternative SSB, SsbB, is expressed uniquely during competence for genetic transformation, but its precise role has been disappointingly obscure. Here, we report our investigations involving comparison of a null mutant (ssbB(-)) and a C-ter truncation (ssbB Delta 7) of SsbB of S. pneumoniae, the latter constructed because SSBs' acidic tail has emerged as a key site for interactions with partner proteins. We provide evidence that SsbB directly protects internalized ssDNA. We show that SsbB is highly abundant, potentially allowing the binding of similar to 1.15 Mb ssDNA (half a genome equivalent); that it participates in the processing of ssDNA into recombinants; and that, at high DNA concentration, it is of crucial importance for chromosomal transformation whilst antagonizing plasmid transformation. While the latter observation explains a long-standing observation that plasmid transformation is very inefficient in S. pneumoniae (compared to chromosomal transformation), the former supports our previous suggestion that SsbB creates a reservoir of ssDNA, allowing successive recombination cycles. SsbB Delta 7 fulfils the reservoir function, suggesting that SsbB C-ter is not necessary for processing protein(s) to access stored ssDNA. We propose that the evolutionary raison d'etre of SsbB and its abundance is maintenance of this reservoir, which contributes to the genetic plasticity of S. pneumoniae by increasing the likelihood of multiple transformation events in the same cell.
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页数:12
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