Arabidopsis thaliana GYRB3 does not encode a DNA gyrase subunit.
BACKGROUND: DNA topoisomerases are enzymes that control the topology of DNA in all cells. DNA gyrase is unique among the topoisomerases in that it is the only enzyme that can actively supercoil DNA using the free energy of ATP hydrolysis. Until recently gyrase was thought to be unique to bacteria, ... but has now been discovered in plants. The genome of the model plant, Arabidopsis thaliana, is predicted to encode four gyrase subunits: AtGyrA, AtGyrB1, AtGyrB2 and AtGyrB3. METHODOLOGY/PRINCIPAL FINDINGS: We found, contrary to previous data, that AtGyrB3 is not essential to the survival of A. thaliana. Bioinformatic analysis suggests AtGyrB3 is considerably shorter than other gyrase B subunits, lacking part of the ATPase domain and other key motifs found in all type II topoisomerases; but it does contain a putative DNA-binding domain. Partially purified AtGyrB3 cannot bind E. coli GyrA or support supercoiling. AtGyrB3 cannot complement an E. coli gyrB temperature-sensitive strain, whereas AtGyrB2 can. Yeast two-hybrid analysis suggests that AtGyrB3 cannot bind to AtGyrA or form a dimer. CONCLUSIONS/SIGNIFICANCE: These data strongly suggest that AtGyrB3 is not a gyrase subunit but has another unknown function. One possibility is that it is a nuclear protein with a role in meiosis in pollen.
Mesh Terms:
Arabidopsis, Arabidopsis Proteins, DNA, Bacterial, Gene Expression Regulation, Plant, Gene Knockout Techniques, Genome, Plant, Glucosinolates, Histone Acetyltransferases, Transcription Factors, Transcription, Genetic
Arabidopsis, Arabidopsis Proteins, DNA, Bacterial, Gene Expression Regulation, Plant, Gene Knockout Techniques, Genome, Plant, Glucosinolates, Histone Acetyltransferases, Transcription Factors, Transcription, Genetic
PLoS ONE
Date: Apr. 03, 2010
PubMed ID: 20360860
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