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4YGL

NaClO4--Interactions between Hofmeister Anions and the Binding Pocket of a Protein

4YGL の概要
エントリーDOI10.2210/pdb4ygl/pdb
関連するPDBエントリー3RYY 4YGJ 4YGK 4YGN
分子名称Carbonic anhydrase 2, ZINC ION, HYDROXIDE ION, ... (5 entities in total)
機能のキーワードlyase, hofmeister anions, hcaii
由来する生物種Homo sapiens (Human)
タンパク質・核酸の鎖数1
化学式量合計29379.42
構造登録者
Fox, J.M.,Kang, K.,Sherman, W.,Heroux, A.,Sastry, G.M.,Baghbanzadeh, M.,Lockett, M.R.,Whitesides, G.M. (登録日: 2015-02-26, 公開日: 2015-03-25, 最終更新日: 2024-02-28)
主引用文献Fox, J.M.,Kang, K.,Sherman, W.,Heroux, A.,Sastry, G.M.,Baghbanzadeh, M.,Lockett, M.R.,Whitesides, G.M.
Interactions between Hofmeister Anions and the Binding Pocket of a Protein.
J.Am.Chem.Soc., 137:3859-3866, 2015
Cited by
PubMed Abstract: This paper uses the binding pocket of human carbonic anhydrase II (HCAII, EC 4.2.1.1) as a tool to examine the properties of Hofmeister anions that determine (i) where, and how strongly, they associate with concavities on the surfaces of proteins and (ii) how, upon binding, they alter the structure of water within those concavities. Results from X-ray crystallography and isothermal titration calorimetry show that most anions associate with the binding pocket of HCAII by forming inner-sphere ion pairs with the Zn(2+) cofactor. In these ion pairs, the free energy of anion-Zn(2+) association is inversely proportional to the free energetic cost of anion dehydration; this relationship is consistent with the mechanism of ion pair formation suggested by the "law of matching water affinities". Iodide and bromide anions also associate with a hydrophobic declivity in the wall of the binding pocket. Molecular dynamics simulations suggest that anions, upon associating with Zn(2+), trigger rearrangements of water that extend up to 8 Å away from their surfaces. These findings expand the range of interactions previously thought to occur between ions and proteins by suggesting that (i) weakly hydrated anions can bind complementarily shaped hydrophobic declivities, and that (ii) ion-induced rearrangements of water within protein concavities can (in contrast with similar rearrangements in bulk water) extend well beyond the first hydration shells of the ions that trigger them. This study paints a picture of Hofmeister anions as a set of structurally varied ligands that differ in size, shape, and affinity for water and, thus, in their ability to bind to—and to alter the charge and hydration structure of—polar, nonpolar, and topographically complex concavities on the surfaces of proteins.
PubMed: 25738615
DOI: 10.1021/jacs.5b00187
主引用文献が同じPDBエントリー
実験手法
X-RAY DIFFRACTION (1.51 Å)
構造検証レポート
Validation report summary of 4ygl
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2024-11-06に公開中

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