菲舍尔344大鼠分离的青壮年和中年心室心肌细胞中蛋白激酶C同工型的表达及其易位的差异

M. Takayama, Y. Ebihara, M. Tani
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引用次数: 20

摘要

众所周知,老年心脏对缺血再灌注的耐受性和预处理的作用会降低,但导致这种缺血耐受性降低和预处理效果降低的机制尚不清楚。为了确定这些机制中与年龄相关的变化,我们分析了蛋白激酶C (PKC)异构体的表达及其通过磷酸酯的易位,因为PKC被认为参与了预处理。使用从青壮年(12周龄:12W)和中年(50周龄:50W) Fischer 344大鼠分离的心肌细胞进行免疫印迹和免疫染色分析。与50W心肌细胞相比,12W心肌细胞胞浆和膜部分pkc - δ的表达显著增加。心肌细胞暴露于100 nmol/L的4- β -phorbol 12-肉豆蔻酸13-乙酸酯(PMA)中,12W组PKC-delta从细胞质转移到膜上,而在50W组,这种转移减弱。免疫染色证实12W心肌细胞中PKC-delta易位。油颗粒检查显示,仅在12W组,预处理诱导的PKC-delta易位与细胞对缺血损伤的保护有关。心肌细胞中PKC异构体表达和激活的年龄相关变化可能是伴随衰老的缺血耐受性降低和预处理效率降低的原因。
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Differences in the expression of protein kinase C isoforms and its translocation after stimulation with phorbol ester between young-adult and middle-aged ventricular cardiomyocytes isolated from Fischer 344 rats.
It is known that the tolerance against ischemia-reperfusion and the effects of preconditioning decrease in aged hearts, but the mechanisms responsible for this diminished ischemic tolerance and reduced efficacy of preconditioning remain unknown. To determine the age-related changes in these mechanisms, protein kinase C (PKC) isoform expression and its translocation by phorbol ester were analyzed because PKC is believed to be involved in preconditioning. Immunoblotting and immunostaining analysis were performed with isoform-specific PKC antibodies using cardiomyocytes isolated from young-adult (12-week-old: 12W) and middle-aged (50-week-old: 50W) Fischer 344 rats. There was significantly greater PKC-delta expression in both the cytosolic and membrane fractions of 12W cardiomyocytes than in 50W ones. Exposure of cardiomyocytes to 100 nmol/L 4-beta-phorbol 12-myristate 13-acetate (PMA) caused translocation of PKC-delta from the cytosol to the membrane in the 12W group, whereas in the 50W group, the translocation was attenuated. Immunostaining confirmed the PKC-delta translocation in the 12W cardiomyocytes. Oil pellet examination showed that the translocation of PKC-delta induced by preconditioning was associated with cell protection from ischemic injury in the 12W group only. Age-related changes in PKC isoform expression and activation in cardiomyocytes might be responsible for the reduced ischemic tolerance and less efficient preconditioning that accompanies aging.
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