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1.
Mol Cells ; 27(2): 237-41, 2009 Feb 28.
Article En | MEDLINE | ID: mdl-19277507

Pathogens Burkholderia pseudomallei (Bp) and Burkholderia mallei (Bm) contain a large number (> 12,000) of Simple Sequence Repeats (SSRs). To study the extent to which these features have contributed to the diversification of genes, we have conducted comparative studies with nineteen genomes of these bacteria. We found 210 genes with characteristic types of SSR variations. SSRs with nonamer repeat units were the most abundant, followed by hexamers and trimers. Amino acids with smaller and nonpolar R-groups are preferred to be encoded by the variant SSRs, perhaps due to their minimal impacts to protein functionality. A majority of these genes appears to code for surface or secreted proteins that may directly interact with the host factors during pathogenesis or other environmental factors. There also are others that encode diverse functions in the cytoplasm, and this protein variability may reflect an extensive involvement of phase variation in survival and adaptation of these pathogens.


Bacterial Proteins/genetics , Burkholderia mallei/genetics , Burkholderia pseudomallei/genetics , Genetic Variation , Genome, Bacterial , Minisatellite Repeats , Bacterial Proteins/classification , Base Sequence , DNA, Bacterial , Molecular Sequence Data , Sequence Alignment
2.
J Bacteriol ; 190(10): 3700-11, 2008 May.
Article En | MEDLINE | ID: mdl-18344359

Agrobacterium tumefaciens strain C58 can transform plant cells to produce and secrete the sugar-phosphate conjugate opines agrocinopines A and B. The bacterium then moves in response to the opines and utilizes them as exclusive sources of carbon, energy, and phosphate via the functions encoded by the acc operon. These privileged opine-involved activities contribute to the formation of agrobacterial niches in the environment. We found that the expression of the acc operon is induced by agrocinopines and also by limitation of phosphate. The main promoter is present in front of the first gene, accR, which codes for a repressor. This operon structure enables efficient repression when opine levels are low. The promoter contains two putative operators, one overlapping the -10 sequence and the other in the further upstream from it; two partly overlapped putative pho boxes between the two operators; and two consecutive transcription start sites. DNA fragments containing either of the operators bound purified repressor AccR in the absence of agrocinopines but not in the presence of the opines, demonstrating the on-off switch of the promoter. Induction of the acc operon can occur under low-phosphate conditions in the absence of agrocinopines and further increases when the opines also are present. Such opine-phosphate dual regulatory system of the operon may ensure maximum utilization of agrocinopines when available and thereby increase the chances of agrobacterial survival in the highly competitive environment with limited general food sources.


Agrobacterium tumefaciens/genetics , Agrobacterium tumefaciens/metabolism , Gene Expression Regulation, Bacterial , Sugar Phosphates/metabolism , Agrobacterium tumefaciens/growth & development , Genes, Bacterial , Operon/genetics , Operon/physiology , Regulon , Repressor Proteins/genetics
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