Anti-σ factor YlaD regulates transcriptional activity of σ factor YlaC and sporulation via manganese-dependent redox-sensing molecular switch in Bacillus subtilis

YlaD, a membrane-anchored anti-sigma (σ) factor of , contains a HX CXXC motif that functions as a redox-sensing domain and belongs to one of the zinc (Zn)-co-ordinated anti-σ factor families. Despite previously showing that the YlaC transcription is controlled by YlaD, experimental evidence of how t...

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Veröffentlicht in:Biochemical journal 2018-07, Vol.475 (13), p.2127-2151
Hauptverfasser: Kwak, Min-Kyu, Ryu, Han-Bong, Song, Sung-Hyun, Lee, Jin-Won, Kang, Sa-Ouk
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Sprache:eng
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Zusammenfassung:YlaD, a membrane-anchored anti-sigma (σ) factor of , contains a HX CXXC motif that functions as a redox-sensing domain and belongs to one of the zinc (Zn)-co-ordinated anti-σ factor families. Despite previously showing that the YlaC transcription is controlled by YlaD, experimental evidence of how the YlaC-YlaD interaction is affected by active cysteines and/or metal ions is lacking. Here, we showed that the P promoter is autoregulated solely by YlaC. Moreover, reduced YlaD contained Zn and iron, while oxidized YlaD did not. Cysteine substitution in YlaD led to changes in its secondary structure; Cys3 had important structural functions in YlaD, and its mutation caused dissociation from YlaC, indicating the essential requirement of a HX CXXC motif for regulating interactions of YlaC with YlaD. Analyses of the far-UV CD spectrum and metal content revealed that the addition of Mn ions to Zn-YlaD changed its secondary structure and that iron was substituted for manganese (Mn). The gene expression using βGlu activity from P : was observed at the late-exponential and early-stationary phase, and the -overexpressing mutant constitutively expressed gene transcripts of and , an important alternative σ factor regulated by ClpXP. Collectively, our data demonstrated that YlaD senses redox changes and elicits increase in Mn ion concentrations and that, in turn, YlaD-mediated transcriptional activity of YlaC regulates sporulation initiation under oxidative stress and Mn-substituted conditions by regulating gene transcripts. This is the first report of the involvement of oxidative stress-responsive extracytoplasmic function σ factors during sporulation via a Mn-dependent redox-sensing molecular switch.
ISSN:0264-6021
1470-8728
DOI:10.1042/BCJ20170911