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与家族性快速起病的肌张力障碍帕金森综合征相关的钠钾ATP酶中的Phe785Leu和Thr618Met突变,通过不同机制干扰钠的相互作用。

Mutations Phe785Leu and Thr618Met in Na+,K+-ATPase, associated with familial rapid-onset dystonia parkinsonism, interfere with Na+ interaction by distinct mechanisms.

作者信息

Rodacker Vivien, Toustrup-Jensen Mads, Vilsen Bente

机构信息

Department of Physiology, Institute of Physiology and Biophysics, University of Aarhus, DK-8000 Aarhus C, Denmark.

出版信息

J Biol Chem. 2006 Jul 7;281(27):18539-48. doi: 10.1074/jbc.M601780200. Epub 2006 Apr 21.

Abstract

The Na(+),K(+)-ATPase plays key roles in brain function. Recently, missense mutations in the Na(+),K(+)-ATPase were found associated with familial rapid-onset dystonia parkinsonism (FRDP). Here, we have characterized the functional consequences of FRDP mutations Phe785Leu and Thr618Met. Both mutations lead to functionally altered, but active, Na(+),K(+)-pumps, that display reduced apparent affinity for cytoplasmic Na(+), but the underlying mechanism differs between the mutants. In Phe785Leu, the interaction of the E(1) form with Na(+) is defective, and the E(1)-E(2) equilibrium is not displaced. In Thr618Met, the Na(+) affinity is reduced because of displacement of the conformational equilibrium in favor of the K(+)-occluded E(2)(K(2)) form. In both mutants, K(+) interaction at the external activating sites of the E(2)P phosphoenzyme is normal. The change of cellular Na(+) homeostasis is likely a major factor contributing to the development of FRDP in patients carrying the Phe785Leu or Thr618Met mutation. Phe785Leu moreover interferes with Na(+) interaction on the extracellular side and reduces the affinity for ouabain significantly. Analysis of two additional Phe(785) mutants, Phe785Leu/Leu786Phe and Phe785Tyr, demonstrated that the aromatic function of the side chain, as well as its exact position, is critical for Na(+) and ouabain binding. The effects of substituting Phe(785) could be explained by structural modeling, demonstrating that Phe(785) participates in a hydrophobic network between three transmembrane segments. Thr(618) is located in the cytoplasmic part of the molecule near the catalytic site, and the structural modeling indicates that the Thr618Met mutation interferes with the bonding pattern in the catalytic site in the E(1) form, thereby destabilizing E(1) relative to E(2)(K(2)).

摘要

钠钾ATP酶在脑功能中发挥关键作用。最近,发现钠钾ATP酶的错义突变与家族性快速起病的肌张力障碍帕金森综合征(FRDP)相关。在此,我们对FRDP突变Phe785Leu和Thr618Met的功能后果进行了表征。这两种突变均导致功能改变但仍具活性的钠钾泵,其对细胞质钠的表观亲和力降低,但突变体之间的潜在机制有所不同。在Phe785Leu中,E(1)形式与钠的相互作用存在缺陷,且E(1)-E(2)平衡未发生位移。在Thr618Met中,由于构象平衡向有利于钾结合的E(2)(K(2))形式位移,钠亲和力降低。在这两种突变体中,E(2)P磷酸酶外部激活位点处的钾相互作用均正常。细胞钠稳态的变化可能是携带Phe785Leu或Thr618Met突变的患者发生FRDP的主要因素。此外,Phe785Leu会干扰细胞外侧的钠相互作用,并显著降低对哇巴因(毒毛花苷)的亲和力。对另外两个Phe(785)突变体Phe785Leu/Leu786Phe和Phe785Tyr的分析表明,侧链的芳香功能及其确切位置对于钠和哇巴因结合至关重要。取代Phe(785)的影响可以通过结构建模来解释,表明Phe(785)参与了三个跨膜片段之间的疏水网络。Thr(618)位于分子的细胞质部分靠近催化位点处,结构建模表明Thr618Met突变会干扰E(1)形式催化位点的键合模式,从而使E(1)相对于E(2)(K(2))不稳定。

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