An Ding, Kewalramani Girsh, Qi Dake, Pulinilkunnil Thomas, Ghosh Sanjoy, Abrahani Ashraf, Wambolt Rich, Allard Michael, Innis Sheila M, Rodrigues Brian
Faculty of Pharmaceutical Sciences, The Univ. of British Columbia, 2146 East Mall, Vancouver, BC, Canada V6T 1Z3.
Am J Physiol Endocrinol Metab. 2005 Jun;288(6):E1120-7. doi: 10.1152/ajpendo.00588.2004. Epub 2005 Feb 1.
Given the importance of lipoprotein lipase (LPL) in cardiac and vascular pathology, the objective of the present study was to investigate whether the beta-agonist isoproterenol (Iso) influences cardiac LPL. Incubation of quiescent cardiomyocytes with Iso for 60 min had no effect on basal, intracellular, or heparin-releasable (HR)-LPL activity. Similarly, Iso did not change HR-LPL in Langendorff isolated hearts that do not beat against an afterload. In the intact animal, LPL activity at the vascular lumen increased significantly in the Iso-treated group, together with a substantial increase in rate-pressure product. This LPL increase was likely via mechanisms regulated by activation of AMP-activated protein kinase (AMPK) and inactivation of acetyl-CoA carboxylase (ACC280). In glucose-perfused hearts, simply switching from Langendorff to the isolated working heart (that beats against an afterload) induced increases in AMPK and ACC280 phosphorylation and enhanced HR-LPL activity. Provision of insulin and albumin-bound palmitic acid to the working heart was able to reverse these effects. In these hearts, introduction of Iso to the buffer perfusate duplicated the effects seen when this beta-agonist was given in vivo. Our data suggest that Iso can influence HR-LPL only during conditions of increased workload, mechanical performance and excessive energy expenditure, and likely in an AMPK-dependent manner.
鉴于脂蛋白脂肪酶(LPL)在心脏和血管病理中的重要性,本研究的目的是探讨β-肾上腺素能激动剂异丙肾上腺素(Iso)是否会影响心脏LPL。将静止的心肌细胞与Iso孵育60分钟,对基础、细胞内或肝素可释放(HR)-LPL活性没有影响。同样,Iso对在无后负荷情况下跳动的Langendorff离体心脏中的HR-LPL也没有改变。在完整动物中,Iso治疗组血管腔内的LPL活性显著增加,同时心率-血压乘积也大幅增加。这种LPL的增加可能是通过AMP激活的蛋白激酶(AMPK)激活和乙酰辅酶A羧化酶(ACC280)失活所调节的机制实现的。在葡萄糖灌注的心脏中,仅仅从Langendorff模式转换为离体工作心脏(对抗后负荷跳动)就会导致AMPK和ACC280磷酸化增加,并增强HR-LPL活性。向工作心脏提供胰岛素和白蛋白结合的棕榈酸能够逆转这些作用。在这些心脏中,将Iso加入缓冲液灌注液中会产生与在体内给予这种β-激动剂时相同的效果。我们的数据表明,Iso仅在工作量增加、机械性能增强和能量消耗过多且可能以AMPK依赖的方式时才会影响HR-LPL。