Structure of the transcription open complex of distinct σ<sup>I</sup> factors.

Li, Jie; Zhang, Haonan; Li, Dongyu; Liu, Ya-Jun; Bayer, Edward A; Cui, Qiu; Feng, Yingang; Zhu, Ping · Nat Commun · 2023

basic_science · Level V

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Abstract

Bacterial σ<sup>I</sup> factors of the σ<sup>70</sup>-family are widespread in Bacilli and Clostridia and are involved in the heat shock response, iron metabolism, virulence, and carbohydrate sensing. A multiplicity of σ<sup>I</sup> paralogues in some cellulolytic bacteria have been shown to be responsible for the regulation of the cellulosome, a multienzyme complex that mediates efficient cellulose degradation. Here, we report two structures at 3.0 Å and 3.3 Å of two transcription open complexes formed by two σ<sup>I</sup> factors, SigI1 and SigI6, respectively, from the thermophilic, cellulolytic bacterium, Clostridium thermocellum. These structures reveal a unique, hitherto-unknown recognition mode of bacterial transcriptional promoters, both with respect to domain organization and binding to promoter DNA. The key characteristics that determine the specificities of the σ<sup>I</sup> paralogues were further revealed by comparison of the two structures. Consequently, the σ<sup>I</sup> factors represent a distinct set of the σ<sup>70</sup>-family σ factors, thus highlighting the diversity of bacterial transcription.

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