Streptomyces are filamentous bacteria with a complex developmental life cycle characterized by the formation of spore-forming aerial hyphae. Transcription of the chaplin and rodlin genes, which are essential for aerial hyphae production, is directed by the extracytoplasmic function (ECF) Ï factor BldN, which is in turn controlled by an anti-Ï factor, RsbN. RsbN shows no sequence similarity to known anti-Ï factors and binds and inhibits BldN in an unknown manner. Here we describe the 2.23 à structure of the RsbN-BldN complex. The structure shows that BldN harbors Ï2 and Ï4 domains that are individually similar to other ECF Ï domains, which bind -10 and -35 promoter regions, respectively. The anti-Ï RsbN consists of three helices, with α3 forming a long helix embraced between BldN Ï2 and Ï4 while RsbN α1-α2 dock against Ï4 in a manner that would block -35 DNA binding. RsbN binding also freezes BldN in a conformation inactive for simultaneous -10 and -35 promoter interaction and RNAP binding. Strikingly, RsbN is structurally distinct from previously solved anti-Ï proteins. Thus, these data characterize the molecular determinants controlling a central Streptomyces developmental switch and reveal RsbN to be the founding member of a new structural class of anti-Ï factor.
The crystal structure of the RsbN-ÏBldN complex from Streptomyces venezuelae defines a new structural class of anti-Ï factor.
来自委内瑞拉链霉菌的 RsbN-σBldN 复合物的晶体结构定义了抗 σ 因子的一种新的结构类别
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作者:Schumacher Maria A, Bush Matthew J, Bibb Maureen J, Ramos-León Félix, Chandra Govind, Zeng Wenjie, Buttner Mark J
| 期刊: | Nucleic Acids Research | 影响因子: | 13.100 |
| 时间: | 2018 | 起止号: | 2018 Aug 21; 46(14):7405-7417 |
| doi: | 10.1093/nar/gky493 | 研究方向: | 微生物学 |
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