Laboratory for Developmental Neurobiology, Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako, Saitama 351-0198, Japan.
J Biol Chem. 2011 Jun 10;286(23):20591-9. doi: 10.1074/jbc.M110.204685. Epub 2011 Apr 22.
Sarco/endoplasmic reticulum (SR/ER) Ca(2+)-ATPase (SERCA) is an intracellular Ca(2+) pump localized on the SR/ER membrane. The role of SERCA in refilling intracellular Ca(2+) stores is pivotal for maintaining intracellular Ca(2+) homeostasis, and disturbed SERCA activity causes many disease phenotypes, including heart failure, diabetes, cancer, and Alzheimer disease. Although SERCA activity has been described using a simple enzyme activity equation, the dynamics of SERCA activity in living cells is still unknown. To monitor SERCA activity in living cells, we constructed an enhanced CFP (ECFP)- and FlAsH-tagged SERCA2a, designated F-L577, which retains the ATP-dependent Ca(2+) pump activity. The FRET efficiency between ECFP and FlAsH of F-L577 is dependent on the conformational state of the molecule. ER luminal Ca(2+) imaging confirmed that the FRET signal changes directly reflect the Ca(2+) pump activity. Dual imaging of cytosolic Ca(2+) and the FRET signals of F-L577 in intact COS7 cells revealed that SERCA2a activity is coincident with the oscillatory cytosolic Ca(2+) concentration changes evoked by ATP stimulation. The Ca(2+) pump activity of SERCA2a in intact cells can be expressed by the Hill equation with an apparent affinity for Ca(2+) of 0.41 ± 0.0095 μm and a Hill coefficient of 5.7 ± 0.73. These results indicate that in the cellular environment the Ca(2+) dependence of ATPase activation is highly cooperative and that SERCA2a acts as a rapid switch to refill Ca(2+) stores in living cells for shaping the intracellular Ca(2+) dynamics. F-L577 will be useful for future studies on Ca(2+) signaling involving SERCA2a activity.
肌浆/内质网(SR/ER)Ca2+-ATP 酶(SERCA)是一种定位于 SR/ER 膜上的细胞内 Ca2+泵。SERCA 在填充细胞内 Ca2+储存库中的作用对于维持细胞内 Ca2+稳态至关重要,而 SERCA 活性的紊乱会导致许多疾病表型,包括心力衰竭、糖尿病、癌症和阿尔茨海默病。尽管已经使用简单的酶活性方程描述了 SERCA 活性,但活细胞中 SERCA 活性的动力学仍然未知。为了监测活细胞中的 SERCA 活性,我们构建了一种增强型 CFP(ECFP)和 FlAsH 标记的 SERCA2a,命名为 F-L577,它保留了 ATP 依赖性 Ca2+泵活性。F-L577 的 ECFP 和 FlAsH 之间的 FRET 效率取决于分子的构象状态。ER 腔 Ca2+成像证实,FRET 信号的变化直接反映 Ca2+泵的活性。在完整的 COS7 细胞中对胞质 Ca2+和 F-L577 的 FRET 信号进行双成像显示,SERCA2a 活性与 ATP 刺激引起的胞质 Ca2+浓度振荡变化一致。完整细胞中 SERCA2a 的 Ca2+泵活性可以用 Hill 方程表示,对 Ca2+的表观亲和力为 0.41±0.0095μm,Hill 系数为 5.7±0.73。这些结果表明,在细胞环境中,ATP 酶激活的 Ca2+依赖性具有高度协同性,SERCA2a 作为一种快速开关,用于在活细胞中填充 Ca2+储存库,以塑造细胞内 Ca2+动力学。F-L577 将有助于未来涉及 SERCA2a 活性的 Ca2+信号研究。