首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Regulation of Sarcoplasmic Reticulum Ca2+ ATPase 2 (SERCA2) Activity by Phosphodiesterase 3A (PDE3A) in Human Myocardium
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Regulation of Sarcoplasmic Reticulum Ca2+ ATPase 2 (SERCA2) Activity by Phosphodiesterase 3A (PDE3A) in Human Myocardium

机译:磷酸二酯酶3A(PDE3A)对人心肌中肌浆网Ca2 + ATPase 2(SERCA2)活性的调节

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摘要

Cyclic nucleotide phosphodiesterase 3A (PDE3) regulates cAMP-mediated signaling in the heart, and PDE3 inhibitors augment contractility in patients with heart failure. Studies in mice showed that PDE3A, not PDE3B, is the subfamily responsible for these inotropic effects and that murine PDE3A1 associates with sarcoplasmic reticulum Ca2+ ATPase 2 (SERCA2), phospholamban (PLB), and AKAP18 in a multiprotein signalosome in human sarcoplasmic reticulum (SR). Immunohistochemical staining demonstrated that PDE3A co-localizes in Z-bands of human cardiac myocytes with desmin, SERCA2, PLB, and AKAP18. In human SR fractions, cAMP increased PLB phosphorylation and SERCA2 activity; this was potentiated by PDE3 inhibition but not by PDE4 inhibition. During gel filtration chromatography of solubilized SR membranes, PDE3 activity was recovered in distinct high molecular weight (HMW) and low molecular weight (LMW) peaks. HMW peaks contained PDE3A1 and PDE3A2, whereas LMW peaks contained PDE3A1, PDE3A2, and PDE3A3. Western blotting showed that endogenous HMW PDE3A1 was the principal PKA-phosphorylated isoform. Phosphorylation of endogenous PDE3A by rPKAc increased cAMP-hydrolytic activity, correlated with shift of PDE3A from LMW to HMW peaks, and increased co-immunoprecipitation of SERCA2, cav3, PKA regulatory subunit (PKARII), PP2A, and AKAP18 with PDE3A. In experiments with recombinant proteins, phosphorylation of recombinant human PDE3A isoforms by recombinant PKA catalytic subunit increased co-immunoprecipitation with rSERCA2 and rat rAKAP18 (recombinant AKAP18). Deletion of the recombinant human PDE3A1/PDE3A2 N terminus blocked interactions with recombinant SERCA2. Serine-to-alanine substitutions identified Ser-292/Ser-293, a site unique to human PDE3A1, as the principal site regulating its interaction with SERCA2. These results indicate that phosphorylation of human PDE3A1 at a PKA site in its unique N-terminal extension promotes its incorporation into SERCA2/AKAP18 signalosomes, where it regulates a discrete cAMP pool that controls contractility by modulating phosphorylation-dependent protein-protein interactions, PLB phosphorylation, and SERCA2 activity.
机译:环核苷酸磷酸二酯酶3A(PDE3)调节心脏中cAMP介导的信号传导,PDE3抑制剂可增强心力衰竭患者的收缩力。小鼠研究表明,PDE3A而非PDE3B是造成这些变力作用的亚家族,鼠PDE3A1与肌浆网Ca 2 + ATPase 2(SERCA2),phosphorlamban(PLB)和AKAP18相关人肌浆网(SR)中的一种多蛋白信号体。免疫组织化学染色显示PDE3A与desmin,SERCA2,PLB和AKAP18共同定位在人心肌细胞的Z带中。在人类SR组分中,cAMP增强PLB磷酸化和SERCA2活性。这可以通过抑制PDE3来增强,但不能通过PDE4抑制来增强。在溶解的SR膜的凝胶过滤色谱过程中,PDE3活性在明显的高分子量(HMW)和低分子量(LMW)峰中恢复。 HMW峰包含PDE3A1和PDE3A2,而LMW峰包含PDE3A1,PDE3A2和PDE3A3。蛋白质印迹显示内源性HMW PDE3A1是主要的PKA磷酸化同工型。 rPKAc使内源性PDE3A磷酸化增加了cAMP水解活性,与PDE3A从LMW峰到HMW峰的移动相关,并增加了SERCA2,cav3,PKA调节亚基(PKARII),PP2A和AKAP18与PDE3A的共免疫沉淀。在重组蛋白的实验中,重组人PDE3A亚型通过重组PKA催化亚基的磷酸化增强了与rSERCA2和大鼠rAKAP18(重组AKAP18)的共免疫沉淀。重组人PDE3A1 / PDE3A2 N末端的缺失阻止了与重组SERCA2的相互作用。丝氨酸至丙氨酸的取代将Ser-292 / Ser-293(人类PDE3A1的独特位点)确定为调节其与SERCA2相互作用的主要位点。这些结果表明,人PDE3A1在其独特N端延伸的PKA位点的磷酸化促进了其掺入SERCA2 / AKAP18信号小体中,在该处它通过调节磷酸化依赖性蛋白-蛋白相互作用调节离散的cAMP库,从而控制收缩力,PLB磷酸化和SERCA2活动。

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