Natural Competence and the Evolution of DNA Uptake Specificity

被引:154
作者
Mell, Joshua Chang [1 ]
Redfield, Rosemary J. [1 ]
机构
[1] Univ British Columbia, Dept Zool, Vancouver, BC, Canada
基金
美国国家卫生研究院; 加拿大自然科学与工程研究理事会;
关键词
UPTAKE SIGNAL SEQUENCES; DEOXYRIBONUCLEIC-ACID UPTAKE; AMP RECEPTOR PROTEIN; GENETIC-TRANSFORMATION; HAEMOPHILUS-INFLUENZAE; HELICOBACTER-PYLORI; BACTERIAL TRANSFORMATION; STREPTOCOCCUS-PNEUMONIAE; HOMOLOGOUS RECOMBINATION; FAMILY PASTEURELLACEAE;
D O I
10.1128/JB.01293-13
中图分类号
Q93 [微生物学];
学科分类号
071005 [微生物学];
摘要
Many bacteria are naturally competent, able to actively transport environmental DNA fragments across their cell envelope and into their cytoplasm. Because incoming DNA fragments can recombine with and replace homologous segments of the chromosome, competence provides cells with a potent mechanism of horizontal gene transfer as well as access to the nutrients in extra-cellular DNA. This review starts with an introductory overview of competence and continues with a detailed consideration of the DNA uptake specificity of competent proteobacteria in the Pasteurellaceae and Neisseriaceae. Species in these distantly related families exhibit strong preferences for genomic DNA from close relatives, a self-specificity arising from the combined effects of biases in the uptake machinery and genomic overrepresentation of the sequences this machinery prefers. Other competent species tested lack obvious uptake bias or uptake sequences, suggesting that strong convergent evolutionary forces have acted on these two families. Recent results show that uptake sequences have multiple "dialects," with clades within each family preferring distinct sequence variants and having corresponding variants enriched in their genomes. Although the genomic consensus uptake sequences are 12 and 29 to 34 bp, uptake assays have found that only central cores of 3 to 4 bp, conserved across dialects, are crucial for uptake. The other bases, which differ between dialects, make weaker individual contributions but have important cooperative interactions. Together, these results make predictions about the mechanism of DNA uptake across the outer membrane, supporting a model for the evolutionary accumulation and stability of uptake sequences and suggesting that uptake biases may be more widespread than currently thought.
引用
收藏
页码:1471 / 1483
页数:13
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