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具有不同结合亲和力的受磷蛋白突变体对无钙心肌钙泵中野生型受磷蛋白的竞争性取代。

Competitive displacement of wild-type phospholamban from the Ca2+-free cardiac calcium pump by phospholamban mutants with different binding affinities.

作者信息

Chen Zhenhui

机构信息

Krannert Institute of Cardiology and the Department of Medicine, Indiana University School of Medicine, Indianapolis, IN 46202, USA.

出版信息

J Mol Cell Cardiol. 2014 Nov;76:130-7. doi: 10.1016/j.yjmcc.2014.08.020. Epub 2014 Sep 3.

Abstract

Phospholamban (PLB) regulates the cardiac Ca(2+) pump (SERCA2a). To test how different species of PLB mutants compete to interact with the Ca(2+)-free, E2 conformation of SERCA2a, using the insect cell expression system, we examined how various exogenous PLB mutants regulated SER-20G-PLB, a chimeric WT-SERCA2a-Gly-WT-PLB construct, which retains a fully catalytic active Ca(2+)-pump and its intrinsically regulatory PLB-tether. Exogenous gain-of-function PLB mutants dominantly super-inhibited the WT-PLB-tethered SERCA2a. Further, in the Ca(2+)-free condition, co-expressed normal- or super-inhibitory PLB mutant with either engineered N30C or V49C residue cross-linked to Lys328 or V89C of SER-20G-PLB at the cytoplasmic or transmembrane domain, respectively, suggesting that these freely diffusing PLB mutants completely replaced the WT-PLB-tether and fit into the binding pocket previously occupied by WT-PLB. Micromolar Ca(2+) completely inhibited cross-linking, yielding a similar Ca(2+)-dependency regardless of the presence of the WT-PLB-tether. In contrast, the PLB mutant with the loss-of-function L31A mutation has decreased binding affinity for SERCA2a, thus cross-linking weakly to the WT-PLB-tethered SERCA2a, and only marginally affected the activity of SER-20G-PLB. Thus, there is a reversible equilibrium between different PLB mutants for binding to E2, in which PLB mutants possessing higher binding affinity for SERCA2a produce a more stable E2·PLB and lower Ca(2+) affinity.

摘要

受磷蛋白(PLB)调节心肌钙泵(SERCA2a)。为了测试不同种类的PLB突变体如何竞争与无钙的SERCA2a的E2构象相互作用,我们利用昆虫细胞表达系统,研究了各种外源性PLB突变体如何调节SER-20G-PLB,这是一种嵌合的野生型-SERCA2a-甘氨酸-野生型-PLB构建体,它保留了一个完全具有催化活性的钙泵及其内在调节性的PLB连接体。外源性功能获得性PLB突变体显著地超抑制了野生型PLB连接的SERCA2a。此外,在无钙条件下,将正常或超抑制性PLB突变体与分别在细胞质或跨膜结构域与SER-20G-PLB的赖氨酸328或缬氨酸89C交联的工程化N30C或V49C残基共表达,这表明这些自由扩散的PLB突变体完全取代了野生型PLB连接体,并适合进入先前由野生型PLB占据的结合口袋。微摩尔浓度的钙离子完全抑制交联,无论野生型PLB连接体是否存在,都产生类似的钙依赖性。相比之下,具有功能丧失性L31A突变的PLB突变体对SERCA2a的结合亲和力降低,因此与野生型PLB连接的SERCA2a交联较弱,并且仅对SER-20G-PLB的活性产生轻微影响。因此,不同PLB突变体与E2结合存在可逆平衡,其中对SERCA2a具有较高结合亲和力的PLB突变体产生更稳定的E2·PLB和更低的钙亲和力。

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