Zhu Ming, Gach Agnieszka A, Liu GongXin, Xu Xiaomei, Lim Chee Chew, Zhang Julie X, Mao Lan, Chuprun Kurt, Koch Walter J, Liao Ronglih, Koren Gideon, Blaxall Burns C, Mende Ulrike
Division of Cardiology, Rhode Island Hospital and The Warren Alpert Medical School of Brown University, Providence, RI 02903, USA.
Am J Physiol Heart Circ Physiol. 2008 Mar;294(3):H1335-47. doi: 10.1152/ajpheart.00584.2007. Epub 2008 Jan 11.
In contrast to the other heterotrimeric GTP-binding proteins (G proteins) Gs and Gi, the functional role of G o is still poorly defined. To investigate the role of G alpha o in the heart, we generated transgenic mice with cardiac-specific expression of a constitutively active form of G alpha o1* (G alpha o*), the predominant G alpha o isoform in the heart. G alpha o expression was increased 3- to 15-fold in mice from 5 independent lines, all of which had a normal life span and no gross cardiac morphological abnormalities. We demonstrate enhanced contractile function in G alpha o* transgenic mice in vivo, along with increased L-type Ca2+ channel current density, calcium transients, and cell shortening in ventricular G alpha o*-expressing myocytes compared with wild-type controls. These changes were evident at baseline and maintained after isoproterenol stimulation. Expression levels of all major Ca2+ handling proteins were largely unchanged, except for a modest reduction in Na+/Ca2+ exchanger in transgenic ventricles. In contrast, phosphorylation of the ryanodine receptor and phospholamban at known PKA sites was increased 1.6- and 1.9-fold, respectively, in G alpha o* ventricles. Density and affinity of beta-adrenoceptors, cAMP levels, and PKA activity were comparable in G alpha o* and wild-type myocytes, but protein phosphatase 1 activity was reduced upon G alpha o* expression, particularly in the vicinity of the ryanodine receptor. We conclude that G alpha o* exerts a positive effect on Ca2+ cycling and contractile function. Alterations in protein phosphatase 1 activity rather than PKA-mediated phosphorylation might be involved in hyperphosphorylation of key Ca2+ handling proteins in hearts with constitutive G alpha o activation.
与其他异源三聚体GTP结合蛋白(G蛋白)Gs和Gi不同,G o的功能作用仍不清楚。为了研究Gαo在心脏中的作用,我们构建了心脏特异性表达组成型活性形式的Gαo1*(Gαo*)的转基因小鼠,Gαo是心脏中主要的Gαo亚型。来自5个独立品系的小鼠中Gαo表达增加了3至15倍,所有这些小鼠寿命正常且无明显心脏形态异常。我们证明,与野生型对照相比,Gαo转基因小鼠体内收缩功能增强,同时表达Gαo的心室肌细胞中L型Ca2+通道电流密度、钙瞬变和细胞缩短增加。这些变化在基线时就很明显,异丙肾上腺素刺激后仍保持。所有主要Ca2+处理蛋白的表达水平基本未变,除了转基因心室中钠钙交换体略有减少。相比之下,Gαo心室中兰尼碱受体和受磷蛋白在已知蛋白激酶A(PKA)位点的磷酸化分别增加了1.6倍和1.9倍。Gαo和野生型心肌细胞中β-肾上腺素能受体的密度和亲和力、环磷酸腺苷(cAMP)水平和PKA活性相当,但Gαo表达后蛋白磷酸酶1活性降低,特别是在兰尼碱受体附近。我们得出结论,Gαo*对Ca2+循环和收缩功能发挥积极作用。蛋白磷酸酶1活性的改变而非PKA介导的磷酸化可能参与了组成型Gαo激活的心脏中关键Ca2+处理蛋白的过度磷酸化。