Maier Lars S, Ziolo Mark T, Bossuyt Julie, Persechini Anthony, Mestril Ruben, Bers Donald M
Department of Physiology, Stritch School of Medicine Loyola University, Chicago, 2160 South First Avenue, Maywood, IL 60153, USA.
J Mol Cell Cardiol. 2006 Sep;41(3):451-8. doi: 10.1016/j.yjmcc.2006.04.020.
Despite its multifunctional role in cardiac myocyte function, little is known about dynamic changes in activation state of calmodulin (CaM). Thus, the purpose of this study was to develop a tool to measure Ca bound CaM (Ca-CaM) levels in intact cardiac myocytes. For dynamic measurements of Ca-CaM, we generated an adenoviral vector which expresses a cyan and a yellow fluorescent protein linked by a modified version of the Ca-CaM binding domain of avian smooth muscle myosin light chain kinase. Adult rabbit cardiac myocytes were infected with the Ca-CaM sensing probe or simultaneously infected with viruses containing CaM and the Ca-CaM sensing probe for 24-48 h. Myocytes were then field stimulated (1 Hz) and excited at 440 nm with emitted fluorescence measured at 485 and 535 nm. Changes in [Ca-CaM] are expressed as the ratio of 485 nm/535 nm. Small beat-to-beat changes of [Ca-CaM] were detected, but only when CaM was co-expressed with the sensor. However, upon beta-adrenergic stimulation with isoproterenol, there was an increase in the amplitude of the signals during each beat (parallel to the shortening, which is an indirect measure of [Ca]i) and also a rise in the diastolic [Ca-CaM]. Total [CaM] measured by both competitive ELISA and semi-quantitative Western blots was 5-6 microM in isolated adult ventricular myocytes. Our results indicate that there are dynamic changes in free Ca-CaM levels (a phasic component tracking [Ca]i) as well as system memory that integrates the [Ca]i signals (a tonic component).
尽管钙调蛋白(CaM)在心肌细胞功能中具有多种功能作用,但对其激活状态的动态变化却知之甚少。因此,本研究的目的是开发一种工具来测量完整心肌细胞中与钙结合的CaM(Ca-CaM)水平。为了动态测量Ca-CaM,我们构建了一种腺病毒载体,该载体表达由禽平滑肌肌球蛋白轻链激酶的Ca-CaM结合域的修饰版本连接的青色和黄色荧光蛋白。成年兔心肌细胞用Ca-CaM传感探针感染,或同时用含有CaM和Ca-CaM传感探针的病毒感染24 - 48小时。然后对心肌细胞进行场刺激(1 Hz),并在440 nm激发,在485和535 nm测量发射荧光。[Ca-CaM]的变化表示为485 nm/535 nm的比值。检测到[Ca-CaM]存在逐搏小幅变化,但仅在CaM与传感器共表达时。然而,在用异丙肾上腺素进行β-肾上腺素能刺激时,每次搏动期间信号幅度增加(与缩短平行,缩短是[Ca]i的间接测量指标),舒张期[Ca-CaM]也升高。通过竞争性ELISA和半定量Western印迹法测量,分离的成年心室肌细胞中的总[CaM]为5 - 6 microM。我们的结果表明,游离Ca-CaM水平存在动态变化(一个追踪[Ca]i的相位成分)以及整合[Ca]i信号的系统记忆(一个紧张性成分)。