Li S-Y, Yang X, Ceylan-Isik A F, Du M, Sreejayan N, Ren J
Division of Pharmaceutical Sciences and Center for Cardiovascular Research and Alternative Medicine, University of Wyoming, 1000 E. University Avenue, Laramie, WY 82071, USA.
Diabetologia. 2006 Jun;49(6):1434-46. doi: 10.1007/s00125-006-0229-0. Epub 2006 Apr 13.
AIMS/HYPOTHESIS: Obesity is an independent risk factor for heart diseases but the underlying mechanism is not clear. This study examined cardiac contraction, oxidative stress, oxidative modification of sarco(endo)plasmic reticulum Ca2+-ATPase (SERCA) and the myosin heavy chain (MHC) isoform switch in obese mice.
Mechanical properties were evaluated in ventricular myocytes from C57BL/6J lean and Lep/Lep obese mice (formerly known as ob/ob mice), including peak shortening (PS), time to 50 or 90% PS, time to 50 or 90% relengthening (TR50, TR90), maximal velocity of shortening/relengthening (+/-dL/dt), intracellular Ca2+ and its decay (tau). Oxidative stress, lipid peroxidation, protein damage and SERCA activity were assessed by glutathione/glutathione disulfide, malondialdehyde, protein carbonyl and 45Ca2+ uptake, respectively. NADPH oxidase was determined by immunoblotting.
Myocytes from Lep/Lep mice displayed depressed PS and +/- dL/dt, prolonged TR50, TR90, elevated resting [Ca2+]i, prolonged tau, reduced contractile capacity at high stimulus frequencies and diminished responsiveness to extracellular Ca2+ compared with lean controls. Cardiac glutathione/glutathione disulfide was decreased whereas malondialdehyde, protein carbonyl, membrane p47(phox) and membrane gp91(phox) were increased in the Lep/Lep group. SERCA isoenzyme 2a was markedly modified by oxidation in Lep/Lep hearts and associated with decreased 45Ca2+ uptake. The MHC isozyme displayed a shift from the alpha to the beta isoform in Lep/Lep hearts. Short-term incubation of angiotensin II with myocytes mimicked the mechanical defects, SERCA oxidation and 45Ca2+ uptake seen in Lep/Lep myocytes. Incubation of the NADPH oxidase inhibitor apocynin with Lep/Lep myocytes alleviated contractile defects without reversing SERCA oxidation or activity.
CONCLUSIONS/INTERPRETATION: These data indicate that obesity-related cardiac defects may be related to NADPH oxidase activation, oxidative damage to SERCA and the MHC isozyme switch.
目的/假设:肥胖是心脏病的独立危险因素,但其潜在机制尚不清楚。本研究检测了肥胖小鼠的心脏收缩、氧化应激、肌浆网/内质网Ca2+-ATP酶(SERCA)的氧化修饰以及肌球蛋白重链(MHC)同工型转换。
评估C57BL/6J瘦小鼠和Lep/Lep肥胖小鼠(原称ob/ob小鼠)心室肌细胞的力学特性,包括峰值缩短(PS)、达到50%或90%PS的时间、达到50%或90%再延长的时间(TR50、TR90)、缩短/再延长的最大速度(+/-dL/dt)、细胞内Ca2+及其衰减(tau)。分别通过谷胱甘肽/谷胱甘肽二硫化物、丙二醛、蛋白质羰基和45Ca2+摄取评估氧化应激、脂质过氧化、蛋白质损伤和SERCA活性。通过免疫印迹法测定NADPH氧化酶。
与瘦对照组相比,Lep/Lep小鼠的心肌细胞表现出PS和+/-dL/dt降低,TR50、TR90延长,静息[Ca2+]i升高,tau延长,高刺激频率下收缩能力降低,对细胞外Ca2+的反应性降低。Lep/Lep组心脏谷胱甘肽/谷胱甘肽二硫化物降低,而丙二醛、蛋白质羰基、膜p47(phox)和膜gp91(phox)升高。Lep/Lep心脏中SERCA同工酶2a被氧化显著修饰,并与45Ca2+摄取减少有关。Lep/Lep心脏中MHC同工酶显示从α型向β型转变。血管紧张素II与心肌细胞短期孵育模拟了Lep/Lep心肌细胞中观察到的力学缺陷、SERCA氧化和45Ca2+摄取。NADPH氧化酶抑制剂阿朴吗啡与Lep/Lep心肌细胞孵育可减轻收缩缺陷,但不能逆转SERCA氧化或活性。
结论/解读:这些数据表明,肥胖相关的心脏缺陷可能与NADPH氧化酶激活、SERCA氧化损伤和MHC同工酶转换有关。