首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Adult rat cardiomyocytes cultured in creatine-deficient medium display large mitochondria with paracrystalline inclusions enriched for creatine kinase
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Adult rat cardiomyocytes cultured in creatine-deficient medium display large mitochondria with paracrystalline inclusions enriched for creatine kinase

机译:在缺乏肌酸的培养基中培养的成年大鼠心肌细胞显示出大线粒体带有顺晶质包裹体富含肌酸激酶

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摘要

In adult regenerating cardiomyocytes in culture, in contrast to fetal cells, mitochondrial creatine kinase (Mi-CK) was expressed. In the same cell, two populations of mitochondria, differing in shape, in distribution within the cell and in content of Mi-CK, could be distinguished. Immunofluorescence studies using antibodies against Mi- CK revealed a characteristic staining pattern for the two types of mitochondria: giant, mostly cylindrically shaped, and, as shown by confocal laser light microscopy, randomly distributed mitochondria exhibited a strong signal for Mi-CK, whereas small, "normal" mitochondria, localized in rows between myofibrils, gave a much weaker signal. Transmission EM of the giant mitochondria demonstrated paracrystalline inclusions located between cristae membranes. Immunogold labeling with anti-Mi-CK antibodies revealed a specific decoration of these inclusions for Mi-CK. Addition of 20 mM creatine, the substrate of Mi-CK, to the essentially creatine-free culture medium caused the disappearance of the giant cylindrically shaped mitochondria as well as of the paracrystalline inclusions, accompanied by an increase of the intracellular level of total creatine. Replacement of creatine in the medium by the creatine analogue and competitor beta- guanidinopropionic acid caused the reappearance of the enlarged mitochondria. It is believed that the accumulation of Mi-CK within the paracrystalline inclusions, similar to those observed in certain myopathies, represents a compensatory effect of the cardiomyocytes to cope with a metabolic stress situation caused by low intracellular total creatine levels.
机译:与胎儿细胞相比,在培养的成年再生心肌细胞中,线粒体肌酸激酶(Mi-CK)得以表达。在同一细胞中,可以区分线粒体的两个种群,它们的形状,细胞内分布和Mi-CK的含量不同。使用针对Mi-CK的抗体进行的免疫荧光研究显示了两种类型的线粒体的特征性染色模式:巨大的,主要是圆柱形的,并且,如通过共聚焦激光显微镜观察,随机分布的线粒体对Mi-CK表现出强信号,而较小分布在肌原纤维之间的“正常”线粒体发出的信号要弱得多。巨大的线粒体的透射电镜显示cr晶体夹杂物位于cr膜之间。用抗Mi-CK抗体进行的免疫金标记显示了这些内含物对Mi-CK的特异修饰。向基本不含肌酸的培养基中添加20 mM肌酸(Mi-CK的底物)会导致巨大的圆柱形线粒体和顺晶体夹杂物消失,并伴随着细胞内总肌酸水平的升高。肌酸类似物和竞争者β-胍基丙酸替代培养基中的肌酸导致线粒体扩大。据信,与某些肌病中观察到的那些相似,在顺晶体内含物中Mi-CK的积累代表心肌细胞的补偿作用,以应付由低细胞内总肌酸水平引起的代谢应激状况。

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