4Q0C
3.1 A resolution crystal structure of the B. pertussis BvgS periplasmic domain
4Q0C の概要
エントリーDOI | 10.2210/pdb4q0c/pdb |
分子名称 | Virulence sensor protein BvgS (1 entity in total) |
機能のキーワード | bacterial extracellular solute-binding proteins, family 3, venus fly trap, periplasmic binding protein, sensor domain, virulence regulation, environmental signals, signal perception, transferase |
由来する生物種 | Bordetella pertussis |
細胞内の位置 | Cell inner membrane ; Multi- pass membrane protein : P16575 |
タンパク質・核酸の鎖数 | 4 |
化学式量合計 | 256420.45 |
構造登録者 | Dupre, E.,Herrou, J.,Lensink, M.F.,Wintjens, R.,Lebedev, A.,Crosson, S.,Villeret, V.,Locht, C.,Antoine, R.,Jacob-Dubuisson, F. (登録日: 2014-04-01, 公開日: 2015-02-11, 最終更新日: 2023-09-20) |
主引用文献 | Dupre, E.,Herrou, J.,Lensink, M.F.,Wintjens, R.,Vagin, A.,Lebedev, A.,Crosson, S.,Villeret, V.,Locht, C.,Antoine, R.,Jacob-Dubuisson, F. Virulence Regulation with Venus Flytrap Domains: Structure and Function of the Periplasmic Moiety of the Sensor-Kinase BvgS. Plos Pathog., 11:e1004700-e1004700, 2015 Cited by PubMed Abstract: Two-component systems (TCS) represent major signal-transduction pathways for adaptation to environmental conditions, and regulate many aspects of bacterial physiology. In the whooping cough agent Bordetella pertussis, the TCS BvgAS controls the virulence regulon, and is therefore critical for pathogenicity. BvgS is a prototypical TCS sensor-kinase with tandem periplasmic Venus flytrap (VFT) domains. VFT are bi-lobed domains that typically close around specific ligands using clamshell motions. We report the X-ray structure of the periplasmic moiety of BvgS, an intricate homodimer with a novel architecture. By combining site-directed mutagenesis, functional analyses and molecular modeling, we show that the conformation of the periplasmic moiety determines the state of BvgS activity. The intertwined structure of the periplasmic portion and the different conformation and dynamics of its mobile, membrane-distal VFT1 domains, and closed, membrane-proximal VFT2 domains, exert a conformational strain onto the transmembrane helices, which sets the cytoplasmic moiety in a kinase-on state by default corresponding to the virulent phase of the bacterium. Signaling the presence of negative signals perceived by the periplasmic domains implies a shift of BvgS to a distinct state of conformation and activity, corresponding to the avirulent phase. The response to negative modulation depends on the integrity of the periplasmic dimer, indicating that the shift to the kinase-off state implies a concerted conformational transition. This work lays the bases to understand virulence regulation in Bordetella. As homologous sensor-kinases control virulence features of diverse bacterial pathogens, the BvgS structure and mechanism may pave the way for new modes of targeted therapeutic interventions. PubMed: 25738876DOI: 10.1371/journal.ppat.1004700 主引用文献が同じPDBエントリー |
実験手法 | X-RAY DIFFRACTION (3.1 Å) |
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