首页> 外文期刊>Journal of applied physiology >Phospholemman overexpression inhibits Na+-K+-ATPase in adult rat cardiac myocytes: relevance to decreased Na+ pump activity in postinfarction myocytes.
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Phospholemman overexpression inhibits Na+-K+-ATPase in adult rat cardiac myocytes: relevance to decreased Na+ pump activity in postinfarction myocytes.

机译:磷脂酶过度表达抑制成年大鼠心肌细胞中的Na + -K + -ATPase:与梗死后心肌细胞中Na +泵活性降低有关。

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摘要

Messenger RNA levels of phospholemman (PLM), a member of the FXYD family of small single-span membrane proteins with putative ion-transport regulatory properties, were increased in postmyocardial infarction (MI) rat myocytes. We tested the hypothesis that the previously observed reduction in Na+-K+-ATPase activity in MI rat myocytes was due to PLM overexpression. In rat hearts harvested 3 and 7 days post-MI, PLM protein expression was increased by two- and fourfold, respectively. To simulate increased PLM expression post-MI, PLM was overexpressed in normal adult rat myocytes by adenovirus-mediated gene transfer. PLM overexpression did not affect the relative level of phosphorylation on serine68 of PLM. Na+-K+-ATPase activity was measured as ouabain-sensitive Na+-K+ pump current (Ip). Compared with control myocytes overexpressing green fluorescent protein alone, Ip measured in myocytes overexpressing PLM was significantly (P < 0.0001) lower at similar membrane voltages, pipette Na+ ([Na+]pip) and extracellular K+ ([K+]o) concentrations. From -70 to +60 mV, neither [Na+]pip nor [K+]o required to attain half-maximal Ip was significantly different between control and PLM myocytes. This phenotype of decreased V(max) without appreciable changes in K(m) for Na+ and K+ in PLM-overexpressed myocytes was similar to that observed in MI rat myocytes. Inhibition of Ip by PLM overexpression was not due to decreased Na+-K+-ATPase expression because there were no changes in either protein or messenger RNA levels of either alpha1- or alpha2-isoforms of Na+-K+-ATPase. In native rat cardiac myocytes, PLM coimmunoprecipitated with alpha-subunits of Na+-K+-ATPase. Inhibition of Na+-K+-ATPase by PLM overexpression, in addition to previously reported decrease in Na+-K+-ATPase expression, may explain altered V(max) but not K(m) of Na+-K+-ATPase in postinfarction rat myocytes.
机译:在心肌梗死(MI)大鼠心肌细胞中,磷脂小分子(PLM)的信使RNA水平升高,该小分子跨膜蛋白具有推测的离子转运调节特性,是FXYD家族的成员。我们检验了以下假设:先前观察到的MI大鼠心肌细胞Na + -K + -ATPase活性降低是由于PLM过表达。在心梗后3天和7天收获的大鼠心脏中,PLM蛋白表达分别增加了两倍和四倍。为了模拟MI后PLM表达的增加,PLM在腺病毒介导的基因转移中在正常成年大鼠心肌细胞中过表达。 PLM过表达并不影响PLM丝氨酸68的相对磷酸化水平。 Na + -K + -ATP酶活性以对哇巴因敏感的Na + -K +泵浦电流(Ip)测量。与仅过表达绿色荧光蛋白的对照肌细胞相比,过表达PLM的肌细胞中测得的Ip在相似的膜电压,移液器Na +([Na +] pip)和细胞外K +([K +] o)浓度下显着降低(P <0.0001)。从-70到+60 mV,在对照组和PLM心肌细胞中,[Na +] pip和[K +] o均未达到最大Ip的一半。降低的V(max)的这种表型在PLM过度表达的心肌细胞中Na +和K +的K(m)没有明显变化,这与MI大鼠心肌细胞中观察到的相似。 PLM过表达抑制Ip并不是由于Na + -K + -ATPase表达降低,因为Na + -K + -ATPase的alpha1-或alpha2-同种型的蛋白质或信使RNA水平没有变化。在天然大鼠心肌细胞中,PLM与Na + -K + -ATPase的α亚基共免疫沉淀。除先前报道的Na + -K + -ATPase表达下降外,PLM过表达抑制Na + -K + -ATPase可能解释了梗死后大鼠心肌细胞中Na + -K + -ATPase的V(max)而不是K(m)改变。

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