Department of Cell and Molecular Physiology, Loyola University Chicago, Maywood, Illinois.
Biophys J. 2013 Oct 15;105(8):1812-21. doi: 10.1016/j.bpj.2013.08.045.
The sarcoendoplasmic reticulum calcium ATPase (SERCA) plays a key role in cardiac calcium handling and is considered a high-value target for the treatment of heart failure. SERCA undergoes conformational changes as it harnesses the chemical energy of ATP for active transport. X-ray crystallography has provided insight into SERCA structural substates, but it is not known how well these static snapshots describe in vivo conformational dynamics. The goals of this work were to quantify the direction and magnitude of SERCA motions as the pump performs work in live cardiac myocytes, and to identify structural determinants of SERCA regulation by phospholamban. We measured intramolecular fluorescence resonance energy transfer (FRET) between fluorescent proteins fused to SERCA cytoplasmic domains. We detected four discrete structural substates for SERCA expressed in cardiac muscle cells. The relative populations of these discrete states oscillated with electrical pacing. Low FRET states were most populated in low Ca (diastole), and were indicative of an open, disordered structure for SERCA in the E2 (Ca-free) enzymatic substate. High FRET states increased with Ca (systole), suggesting rigidly closed conformations for the E1 (Ca-bound) enzymatic substates. Notably, a special compact E1 state was observed after treatment with β-adrenergic agonist or with coexpression of phosphomimetic mutants of phospholamban. The data suggest that SERCA calcium binding induces the pump to undergo a transition from an open, dynamic conformation to a closed, ordered structure. Phosphorylated phospholamban stabilizes a unique conformation of SERCA that is characterized by a compact architecture.
肌浆网钙 ATP 酶(SERCA)在心脏钙处理中起着关键作用,被认为是心力衰竭治疗的高价值靶点。SERCA 在利用 ATP 的化学能进行主动运输时会发生构象变化。X 射线晶体学为 SERCA 结构亚基提供了深入了解,但尚不清楚这些静态快照在多大程度上描述了体内构象动力学。这项工作的目的是量化泵在活心肌细胞中做功时 SERCA 运动的方向和幅度,并确定磷蛋白调节 SERCA 的结构决定因素。我们测量了融合到 SERCA 细胞质结构域的荧光蛋白之间的分子内荧光共振能量转移(FRET)。我们检测到 SERCA 在心肌细胞中表达的四个离散结构亚基。这些离散状态的相对群体随电起搏而振荡。低 FRET 状态在低钙(舒张期)时最丰富,表明 SERCA 在 E2(无钙)酶亚基中处于开放、无序的结构。高 FRET 状态随 Ca(收缩期)增加,表明 E1(Ca 结合)酶亚基的刚性封闭构象。值得注意的是,在用β-肾上腺素能激动剂处理或共表达磷酸化模拟突变的磷蛋白后,观察到特殊的紧凑 E1 状态。数据表明,SERCA 钙结合诱导泵从开放、动态构象转变为封闭、有序结构。磷酸化的磷蛋白稳定了 SERCA 的独特构象,其特征是紧凑的结构。