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Structural and functional adaptation of Haloferax volcanii TFEα/β
Author(s) -
Fabian Blombach,
Darya Ausiannikava,
Angelo Miguel Figueiredo,
Zoja Soloviev,
Tanya Prentice,
Mark Zhang,
Nanruoyi Zhou,
Konstantinos Thalassinos,
Thorsten Allers,
Finn Werner
Publication year - 2017
Publication title -
nucleic acids research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 9.008
H-Index - 537
eISSN - 1362-4954
pISSN - 0305-1048
DOI - 10.1093/nar/gkx1302
Subject(s) - haloferax volcanii , biology , transcription factor , transcription (linguistics) , gene , general transcription factor , genetics , archaea , biochemistry , microbiology and biotechnology , gene expression , promoter , linguistics , philosophy
The basal transcription factor TFE enhances transcription initiation by catalysing DNA strand-separation, a process that varies with temperature and ionic strength. Canonical TFE forms a heterodimeric complex whose integrity and function critically relies on a cubane iron-sulphur cluster residing in the TFEβ subunit. Halophilic archaea such as Haloferax volcanii have highly divergent putative TFEβ homologues with unknown properties. Here, we demonstrate that Haloferax TFEβ lacks the prototypical iron-sulphur cluster yet still forms a stable complex with TFEα. A second metal cluster contained in the zinc ribbon domain in TFEα is highly degenerate but retains low binding affinity for zinc, which contributes to protein folding and stability. The deletion of the tfeB gene in H. volcanii results in the aberrant expression of approximately one third of all genes, consistent with its function as a basal transcription initiation factor. Interestingly, tfeB deletion particularly affects foreign genes including a prophage region. Our results reveal the loss of metal centres in Hvo transcription factors, and confirm the dual function of TFE as basal factor and regulator of transcription.

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