Department of Biochemistry, University of Minnesota, Minneapolis, Minnesota, USA.
Biophys J. 2012 Sep 19;103(6):1370-8. doi: 10.1016/j.bpj.2012.08.032.
We have used electron paramagnetic resonance (EPR) to probe the homo- and heterooligomeric interactions of reconstituted sarcoplasmic reticulum Ca-ATPase (SERCA) and its regulator phospholamban (PLB). SERCA is responsible for restoring calcium to the sarcoplasmic reticulum to allow muscle relaxation, whereas PLB inhibits cardiac SERCA unless phosphorylated at Ser(16). To determine whether changes in protein association play essential roles in regulation, we detected the microsecond rotational diffusion of both proteins using saturation transfer EPR. Peptide synthesis was used to create a fully functional and monomeric PLB mutant with a spin label rigidly coupled to the backbone of the transmembrane helix, while SERCA was reacted with a Cys-specific spin label. Saturation transfer EPR revealed that sufficiently high lipid/protein ratios minimized self-association for both proteins. Under these dilute conditions, labeled PLB was substantially immobilized after co-reconstitution with unlabeled SERCA, reflecting their association to form the regulatory complex. Ser(16) phosphorylation slightly increased this immobilization. Complementary measurements with labeled SERCA showed no change in mobility after co-reconstitution with unlabeled PLB, regardless of its phosphorylation state. We conclude that phosphorylating monomeric PLB can relieve SERCA inhibition without changes in the oligomeric states of these proteins, indicating a structural rearrangement within the heterodimeric regulatory complex.
我们使用电子顺磁共振(EPR)来探测重组肌浆网 Ca-ATP 酶(SERCA)及其调节剂肌球蛋白轻链磷酸酶(PLB)的同型和异型寡聚相互作用。SERCA 负责将钙重新输送到肌浆网中,以允许肌肉放松,而 PLB 则抑制心脏 SERCA,除非 Ser(16)被磷酸化。为了确定蛋白质相互作用的变化是否在调节中发挥重要作用,我们使用饱和转移 EPR 检测了这两种蛋白质的微秒旋转扩散。肽合成用于创建一个完全功能的和单体的 PLB 突变体,其自旋标记刚性连接到跨膜螺旋的骨架上,而 SERCA 则与一个 Cys 特异性的自旋标记反应。饱和转移 EPR 表明,足够高的脂质/蛋白质比可以最小化两种蛋白质的自组装。在这些稀释条件下,标记的 PLB 在与未标记的 SERCA 共重组后会被大量固定,反映了它们形成调节复合物的相互作用。Ser(16)的磷酸化略微增加了这种固定。用标记的 SERCA 进行互补测量表明,与未标记的 PLB 共重组后,其迁移率没有变化,无论其磷酸化状态如何。我们得出结论,磷酸化单体 PLB 可以在不改变这些蛋白质的寡聚状态的情况下缓解 SERCA 的抑制,这表明在异源二聚体调节复合物中存在结构重排。