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9CUV

Solution Structure of the N-terminal signalling domain of Pseudomonas capferrum PupB

9CUV の概要
エントリーDOI10.2210/pdb9cuv/pdb
NMR情報BMRB: 27141
分子名称PupB N-terminal Signaling Domain (1 entity in total)
機能のキーワードcell surface signalling, transport protein, signalling protein, iron homeostasis
由来する生物種Pseudomonas capeferrum
タンパク質・核酸の鎖数1
化学式量合計8105.89
構造登録者
Morgan, D.M.,Sultana, T.,Colbert, C.L. (登録日: 2024-07-26, 公開日: 2024-10-09)
主引用文献Sultana, T.,Morgan, D.M.,Jernberg, B.D.,Zak, P.,Sinha, S.C.,Colbert, C.L.
Biophysical and Solution Structure Analysis of Critical Residues Involved in the Interaction between the PupB N-Terminal Signaling Domain and PupR C-Terminal Cell Surface Signaling Domain from Pseudomonas capeferrum.
Biomolecules, 14:-, 2024
Cited by
PubMed Abstract: Cell surface signaling (CSS) is a means of rapidly adjusting transcription in response to extracellular stimuli in Gram-negative bacteria. The pseudobactin BN7/8 uptake (Pup) system not only imports iron but also upregulates its own transcription through CSS in . In the absence of ferric pseudobactin BN7/8, the signaling components are maintained in a resting state via the formation of a periplasmic complex between the N-terminal signaling domain (NTSD) of the outer membrane iron-transporter, PupB, and the C-terminal CSS domain (CCSSD) of the sigma regulator, PupR. The previously determined 1.6 Å crystal structure of this periplasmic complex has allowed us to probe the structural and thermodynamic consequences of mutating key interfacial residues. In this report, we describe the solution structure of the PupB NTSD and use Nuclear Magnetic Resonance spectroscopy, Isothermal Titration Calorimetry, and Circular Dichroism spectroscopy together with thermal denaturation to investigate whether three PupB point mutations, Q69K, H72D, and L74A, influence the interaction merely due to the chemical nature of the amino acid substitution or also cause changes in overall protein structure. Our results demonstrate that binding to the PupR CCSSD does not alter the structure of PupB NTSD and that the individual mutations have only minor effects on structure. The mutations generally lower thermodynamic stability of the NTSD and weaken binding to the CCSSD. These findings validate the X-ray crystal structure interface, emphasizing the importance of amino acid chemical nature at the interface.
PubMed: 39334875
DOI: 10.3390/biom14091108
主引用文献が同じPDBエントリー
実験手法
SOLUTION NMR
構造検証レポート
Validation report summary of 9cuv
検証レポート(詳細版)ダウンロードをダウンロード

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件を2025-03-05に公開中

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