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Thermodynamics of Cation Binding to the Sarcoendoplasmic Reticulum Calcium ATPase Pump and Impacts on Enzyme Function

机译:阳离子体阳离子体与Sarcoendoplasmic网钙ATP酶泵的热力学和对酶功能的影响

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Sarcoendoplasmic reticulum Ca2+-ATPase (SERCA) is a transmembrane pump that plays an important role in transporting calcium into the sarcoplasmic reticulum (SR). While calcium (Ca2+) binds SERCA with micromolar affinity, magnesium (Mg2+) and potassium (K+) also compete with Ca(2+ )binding. However, the molecular bases for these competing ions' influence on the SERCA function and the selectivity of the pump for Ca2+ are not well-established. We therefore used in silico methods to resolve molecular determinants of cation binding in the canonical site I and II Ca(2+ )binding sites via (1) triplicate molecular dynamics (MD) simulations of Mg2+, Ca2+, and K+-bound SERCA, (2) mean spherical approximation (MSA) theory to score the affinity and selectivity of cation binding to the MD-resolved structures, and (3) state models of SERCA turnover informed from MSA- derived affinity data. Our key findings are that (a) coordination at sites I and II is optimized for Ca2+ and to a lesser extent for Mg(2+ )and K+, as determined by MD-derived cation-amino acid oxygen and bound water configurations, (b) the impaired coordination and high desolvation cost for Mg' precludes favorable Mg2+ binding relative to Ca2+, while K+ has limited capacity to bind site I, and (c) Mg2+ most likely acts as inhibitor and K+ as intermediate in SERCA's reaction cycle, based on a best-fit state model of SERCA turnover. These findings provide a quantitative basis for SERCA function that leverages molecular-scale thermodynamic data and rationalizes enzyme activity across broad ranges of K+, Ca2+, and Mg(2+)concentrations.
机译:Sarcoendoplasmic TeariCulum Ca2 + -AtPase(Serca)是一种跨膜泵,在将钙输送到肌淋式网(SR)中起着重要作用。虽然钙(CA2 +)与微摩尔亲和力结合Serca,但镁(Mg2 +)和钾(K +)也与Ca(2+)结合竞争。然而,这些竞争离子对Serca功能的影响以及Ca2 +泵的选择性的分子基碱不太确认。因此,我们用于硅方法以通过(1)Mg2 +,Ca2 +和K + -Bound Serca的三份分子动态(MD)模拟来解析规范位点I和II Ca(2+)结合位点中的阳离子结合的分子决定因素。 2)平均球形近似(MSA)理论,以得分阳离子结合与MD分辨结构的亲和力和选择性,以及(3)来自MSA-衍生的亲和力数据的Serca周转状态模型。我们的主要发现是(a)位点I和II的协调针对Ca2 +优化,并以Mg衍生的阳离子 - 氨基酸氧和结合水配置测定的Mg(2+)和K +的较小程度(b)(b )MG'的损害的配位和高脱溶解成本不相对于Ca2 +的良好的Mg2 +结合,而K +基于以下基础SERCA营业额的最佳状态模型。这些发现提供了SERCA功能的定量基础,其利用分子尺度热力学数据并可在k +,Ca2 +和Mg(2+)浓度的宽范围内合理化酶活性。

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