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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Dissociated expression of mitochondrial and cytosolic creatine kinases in the human brain: A new perspective on the role of creatine in brain energy metabolism
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Dissociated expression of mitochondrial and cytosolic creatine kinases in the human brain: A new perspective on the role of creatine in brain energy metabolism

机译:线粒体和胞质肌酸激酶在人脑中的分离表达:肌酸在脑能量代谢中作用的新观点

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The phosphocreatine/creatine kinase (PCr/CK) system in the brain is defined by the expression of two CK isozymes: the cytosolic brain-type CK (BCK) and the ubiquitous mitochondrial CK (uMtCK). The system plays an important role in supporting cellular energy metabolism by buffering adenosine triphosphate (ATP) consumption and improving the flux of high-energy phosphoryls around the cell. This system is well defined in muscle tissue, but there have been few detailed studies of this system in the brain, especially in humans. Creatine is known to be important for neurologic function, and its loss from the brain during development can lead to mental retardation. This study provides the first detailed immunohistochemical study of the expression pattern of BCK and uMtCK in the human brain. A strikingly dissociated pattern of expression was found: uMtCK was found to be ubiquitously and exclusively expressed in neuronal populations, whereas BCK was dominantly expressed in astrocytes, with a low and selective expression in neurons. This pattern indicates that the two CK isozymes are not widely coexpressed in the human brain, but rather are selectively expressed depending on the cell type. These results suggest that the brain cells may use only certain properties of the PCr/CK system depending on their energetic requirements.
机译:大脑中的磷酸肌酸/肌酸激酶(PCr / CK)系统由两种CK同工酶的表达来定义:胞质脑型CK(BCK)和普遍存在的线粒体CK(uMtCK)。该系统通过缓冲三磷酸腺苷(ATP)的消耗并改善细胞周围高能磷酸基的通量,在支持细胞能量代谢中起着重要作用。该系统在肌肉组织中定义良好,但是在大脑中,特别是在人类中,对该系统的详细研究很少。众所周知,肌酸对于神经功能很重要,在发育过程中从大脑中流失会导致智力低下。这项研究提供了关于人脑中BCK和uMtCK表达模式的首次详细的免疫组织化学研究。发现了惊人地分离的表达模式:发现uMtCK在神经元群体中普遍存在且只表达,而BCK在星形胶质细胞中占主导地位,在神经元中表达低且选择性。该模式表明这两种CK同工酶在人脑中并未广泛共表达,而是根据细胞类型选择性表达。这些结果表明,脑细胞可能仅根据其能量需求使用PCr / CK系统的某些属性。

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