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1.
Mol Microbiol ; 112(3): 973-991, 2019 09.
Article in English | MEDLINE | ID: mdl-31240776

ABSTRACT

When the Lyme disease spirochete, Borrelia burgdorferi, transfers from a feeding tick into a human or other vertebrate host, the bacterium produces vertebrate-specific proteins and represses factors needed for arthropod colonization. Previous studies determined that the B. burgdorferi BpuR protein binds to its own mRNA and autoregulates its translation, and also serves as co-repressor of erp transcription. Here, we demonstrate that B. burgdorferi controls transcription of bpuR, expressing high levels of bpuR during tick colonization but significantly less during mammalian infection. The master regulator of chromosomal replication, DnaA, was found to bind specifically to a DNA sequence that overlaps the bpuR promoter. Cultured B. burgdorferi that were genetically manipulated to produce elevated levels of BpuR exhibited altered levels of several proteins, although BpuR did not impact mRNA levels. Among these was the SodA superoxide dismutase, which is essential for mammalian infection. BpuR bound to sodA mRNA in live B. burgdorferi, and a specific BpuR-binding site was mapped 5' of the sodA open reading frame. Recognition of posttranscriptional regulation of protein levels by BpuR adds another layer to our understanding of the B. burgdorferi regulome, and provides further evidence that bacterial protein levels do not always correlate directly with mRNA levels.


Subject(s)
Bacterial Proteins/metabolism , Borrelia burgdorferi/metabolism , DNA-Binding Proteins/metabolism , Gene Expression Regulation, Bacterial , Lyme Disease/microbiology , RNA-Binding Proteins/metabolism , Superoxide Dismutase/metabolism , Ticks/microbiology , Animals , Bacterial Proteins/genetics , Borrelia burgdorferi/genetics , DNA-Binding Proteins/genetics , Female , Humans , Mice , Mice, Inbred C3H , Promoter Regions, Genetic , RNA-Binding Proteins/genetics , Superoxide Dismutase/genetics
2.
J Biol Chem ; 288(36): 26220-26234, 2013 Sep 06.
Article in English | MEDLINE | ID: mdl-23846702

ABSTRACT

The PUR domain is a nucleic acid-binding motif found in critical regulatory proteins of higher eukaryotes and in certain species of bacteria. During investigations into mechanisms by which the Lyme disease spirochete controls synthesis of its Erp surface proteins, it was discovered that the borrelial PUR domain protein, Bpur, binds with high affinity to double-stranded DNA adjacent to the erp transcriptional promoter. Bpur was found to enhance the effects of the erp repressor protein, BpaB. Bpur also bound single-stranded DNA and RNA, with relative affinities RNA > double-stranded DNA > single-stranded DNA. Rational site-directed mutagenesis of Bpur identified amino acid residues and domains critical for interactions with nucleic acids, and it revealed that the PUR domain has a distinct mechanism of interaction with each type of nucleic acid ligand. These data shed light on both gene regulation in the Lyme spirochete and functional mechanisms of the widely distributed PUR domain.


Subject(s)
Bacterial Proteins/chemistry , Borrelia burgdorferi/chemistry , DNA, Bacterial/chemistry , DNA-Binding Proteins/chemistry , RNA, Bacterial/chemistry , RNA-Binding Proteins/chemistry , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Borrelia burgdorferi/genetics , Borrelia burgdorferi/metabolism , DNA, Bacterial/genetics , DNA, Bacterial/metabolism , DNA, Single-Stranded/chemistry , DNA, Single-Stranded/genetics , DNA, Single-Stranded/metabolism , DNA-Binding Proteins/genetics , DNA-Binding Proteins/metabolism , Humans , Lyme Disease/genetics , Lyme Disease/metabolism , Membrane Proteins/biosynthesis , Membrane Proteins/genetics , Protein Structure, Tertiary , RNA, Bacterial/genetics , RNA, Bacterial/metabolism , RNA-Binding Proteins/genetics , RNA-Binding Proteins/metabolism
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