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Molecular simulations and free-energy calculations suggest conformation-dependent anion binding to a cytoplasmic site as a mechanism for Na/K-ATPase ion selectivity.分子模拟和自由能计算表明,构象依赖性阴离子与细胞质位点的结合是钠钾ATP酶离子选择性的一种机制。
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1
Implementation of the CHARMM Force Field in GROMACS: Analysis of Protein Stability Effects from Correction Maps, Virtual Interaction Sites, and Water Models.CHARMM力场在GROMACS中的实现:来自校正图、虚拟相互作用位点和水模型的蛋白质稳定性效应分析
J Chem Theory Comput. 2010 Feb 9;6(2):459-66. doi: 10.1021/ct900549r. Epub 2010 Jan 25.
2
All-atom empirical potential for molecular modeling and dynamics studies of proteins.蛋白质分子建模和动力学研究的全原子经验势。
J Phys Chem B. 1998 Apr 30;102(18):3586-616. doi: 10.1021/jp973084f.
3
Inhibition of K+ transport through Na+, K+-ATPase by capsazepine: role of membrane span 10 of the α-subunit in the modulation of ion gating.辣椒平对通过钠钾ATP酶的钾离子转运的抑制作用:α亚基的第10跨膜区在离子门控调节中的作用
PLoS One. 2014 May 9;9(5):e96909. doi: 10.1371/journal.pone.0096909. eCollection 2014.
4
Molecular mechanism of Na(+),K(+)-ATPase malfunction in mutations characteristic of adrenal hypertension.肾上腺性高血压特征性突变中Na(+),K(+)-ATP酶功能异常的分子机制
Biochemistry. 2014 Feb 4;53(4):746-54. doi: 10.1021/bi401425g. Epub 2014 Jan 24.
5
Water lubricates hydrogen-bonded molecular machines.水润滑氢键分子机器。
Nat Chem. 2013 Nov;5(11):929-34. doi: 10.1038/nchem.1744. Epub 2013 Sep 1.
6
Crystal structure of a Na+-bound Na+,K+-ATPase preceding the E1P state.Na+-结合态 Na+,K+-ATP 酶的 E1P 态前的晶体结构。
Nature. 2013 Oct 10;502(7470):201-6. doi: 10.1038/nature12578. Epub 2013 Oct 2.
7
Crystal structure of Na+, K(+)-ATPase in the Na(+)-bound state.钠离子、钾离子-ATP 酶在钠离子结合状态下的晶体结构。
Science. 2013 Oct 4;342(6154):123-7. doi: 10.1126/science.1243352. Epub 2013 Sep 19.
8
Recovery from slow inactivation in K+ channels is controlled by water molecules.钾通道中慢失活的恢复由水分子控制。
Nature. 2013 Sep 5;501(7465):121-4. doi: 10.1038/nature12395. Epub 2013 Jul 28.
9
Transient formation of water-conducting states in membrane transporters.膜转运蛋白中瞬态水通道状态的形成。
Proc Natl Acad Sci U S A. 2013 May 7;110(19):7696-701. doi: 10.1073/pnas.1218986110. Epub 2013 Apr 22.
10
Protonation of key acidic residues is critical for the K⁺-selectivity of the Na/K pump.关键酸性残基的质子化对于钠钾泵的钾离子选择性至关重要。
Nat Struct Mol Biol. 2011 Sep 11;18(10):1159-63. doi: 10.1038/nsmb.2113.

不影响钠钾ATP酶钠激活作用的钾同类物:离子结合腔的水化作用可能控制离子选择性。

K+ congeners that do not compromise Na+ activation of the Na+,K+-ATPase: hydration of the ion binding cavity likely controls ion selectivity.

作者信息

Mahmmoud Yasser A, Kopec Wojciech, Khandelia Himanshu

机构信息

From the Department of Biomedicine, University of Aarhus, DK-8000 Aarhus C and

the MEMPHYS, Center for Biomembrane Physics, University of Southern Denmark, DK-5230 Odense M, Denmark.

出版信息

J Biol Chem. 2015 Feb 6;290(6):3720-31. doi: 10.1074/jbc.M114.577486. Epub 2014 Dec 22.

DOI:10.1074/jbc.M114.577486
PMID:25533461
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4319036/
Abstract

The Na(+),K(+)-ATPase is essential for ionic homeostasis in animal cells. The dephosphoenzyme contains Na(+) selective inward facing sites, whereas the phosphoenzyme contains K(+) selective outward facing sites. Under normal physiological conditions, K(+) inhibits cytoplasmic Na(+) activation of the enzyme. Acetamidinium (Acet(+)) and formamidinium (Form(+)) have been shown to permeate the pump through the outward facing sites. Here, we show that these cations, unlike K(+), are unable to enter the inward facing sites in the dephosphorylated enzyme. Consistently, the organic cations exhibited little to no antagonism to cytoplasmic Na(+) activation. Na(+),K(+)-ATPase structures revealed a previously undescribed rotamer transition of the hydroxymethyl side chain of the absolutely conserved Thr(772) of the α-subunit. The side chain contributes its hydroxyl to Na(+) in site I in the E1 form and rotates to contribute its methyl group toward K(+) in the E2 form. Molecular dynamics simulations to the E1·AlF4 (-)·ADP·3Na(+) structure indicated that 1) bound organic cations differentially distorted the ion binding sites, 2) the hydroxymethyl of Thr(772) rotates to stabilize bound Form(+) through water molecules, and 3) the rotamer transition is mediated by water traffic into the ion binding cavity. Accordingly, dehydration induced by osmotic stress enhanced the interaction of the congeners with the outward facing sites and profoundly modified the organization of membrane domains of the α-subunit. These results assign a catalytic role for water in pump function, and shed light on a backbone-independent but a conformation-dependent switch between H-bond and dispersion contact as part of the catalytic mechanism of the Na(+),K(+)-ATPase.

摘要

钠钾ATP酶对动物细胞的离子稳态至关重要。去磷酸化酶含有面向内侧的钠选择性位点,而磷酸化酶含有面向外侧的钾选择性位点。在正常生理条件下,钾抑制酶的胞质钠激活。已证明脒鎓(Acet(+))和甲脒鎓(Form(+))可通过面向外侧的位点渗透到泵中。在此,我们表明,与钾不同,这些阳离子无法进入去磷酸化酶中面向内侧的位点。一致地,有机阳离子对胞质钠激活几乎没有拮抗作用。钠钾ATP酶结构揭示了α亚基绝对保守的苏氨酸(Thr(772))的羟甲基侧链以前未描述的旋转异构体转变。在E1形式下,该侧链将其羟基贡献给位点I中的钠,而在E2形式下旋转以将其甲基贡献给钾。对E1·AlF4 (-)·ADP·3Na(+)结构的分子动力学模拟表明:1)结合的有机阳离子使离子结合位点发生不同程度的扭曲;2)Thr(772)的羟甲基旋转以通过水分子稳定结合的甲脒鎓;3)旋转异构体转变由进入离子结合腔的水流介导。因此,渗透应激诱导的脱水增强了同系物与面向外侧位点的相互作用,并深刻改变了α亚基膜结构域的组织。这些结果赋予了水在泵功能中的催化作用,并揭示了作为钠钾ATP酶催化机制一部分的氢键和色散接触之间与主链无关但与构象相关的转换。