Dissection of the regulatory mechanism of a heat-shock responsive promoter in Haloarchaea: A new paradigm for general transcription factor directed archaeal gene regulation

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Abstract

Multiple general transcription factors (GTFs), TBP and TFB, are present in many haloarchaea, and are deemed to accomplish global gene regulation. However, details and the role of GTF-directed transcriptional regulation in stress response are still not clear. Here, we report a comprehensive investigation of the regulatory mechanism of a heat-induced gene (hsp 5) from Halobacterium salinarum. We demonstrated by mutation analysis that the sequences 5′ and 3′ to the core elements (TATA box and BRE) of the hsp 5 promoter (Phsp5) did not significantly affect the basal and heat-induced gene expression, as long as the transcription initiation site was not altered. Moreover, the BRE and TATA box of Phsp5 were sufficient to render a nonheat-responsive promoter heat-inducible, in both Haloferax volcanii and Halobacterium sp. NRC-1. DNA-protein interactions revealed that two heat-inducible GTFs, TFB2 from H. volcanii and TFBb from Halobacterium sp. NRC-1, could specifically bind to Phsp5 likely in a temperature-dependent manner. Taken together, the heat-responsiveness of Phsp5 was mainly ascribed to the core promoter elements that were efficiently recognized by specific heat-induced GTFs at elevated temperature, thus providing a new paradigm for GTF-directed gene regulation in the domain of Archaea. © 2008 The Author(s).

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Lu, Q., Han, J., Zhou, L., Coker, J. A., Dassarma, P., Dassarma, S., & Xiang, H. (2008). Dissection of the regulatory mechanism of a heat-shock responsive promoter in Haloarchaea: A new paradigm for general transcription factor directed archaeal gene regulation. Nucleic Acids Research, 36(9), 3031–3042. https://doi.org/10.1093/nar/gkn152

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