首页> 外文期刊>Bulletin of experimental biology and medicine >Structural and Functional Features of Ca(2+)Transport Systems in Liver Mitochondria of Rats with Experimental Hyperthyroidism
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Structural and Functional Features of Ca(2+)Transport Systems in Liver Mitochondria of Rats with Experimental Hyperthyroidism

机译:实验性甲状腺功能亢进症肝线粒体肝线粒体中Ca(2+)输送系统的结构和功能特征

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摘要

We analyzed structural and functional features of the main mitochondrial Ca2+-transporting systems, mitochondrial Ca(2+)uniporter complex (MCUC) and Ca2+-dependent cyclosporin A-sensitive mitochondrial permeability transition pore (MPT pore), in rats with hyperthyroid state. It was found that, the rate of Ca(2+)accumulation by rat liver mitochondria in this pathology increases by 1.3 times, which can be associated with higher level of the channel-forming subunit of the uniporter MCU and lower content of dominant-negative subunit of this complex MCUb. At the same time, the level of the regulatory subunit MICU1 remained unchanged. It was shown that calcium retention capacity of liver mitochondria in rats with experimental hyperthyroidism decreased by 2 times in comparison with the control, which attested to reduced resistance of liver mitochondria of hyperthyroid rats to induction of the MPT pore. The observed changes are consistent with the data on increased amount of cyclophilin D, a mitochondrial matrix peptidyl-prolyl isomerase that is known to modulate the MPT pore opening and expression of thePpifgene that encodes mitochondrial cyclophilin D in rats with experimental hyperthyroidism.
机译:在大鼠中分析了主要线粒体Ca2 + -Transporting系统,线粒体Ca(2+)单百年蛋白综合体(MCUC)和Ca2 +依赖性环孢菌素敏感线粒体渗透孔(MPT孔)的结构和功能特征。结果发现,该病理学中大鼠肝线粒体的Ca(2+)累积的速率增加了1.3倍,这可以与单百MCU的沟道形成亚基的更高水平相关,以及较低的主干负数这个复杂的MCUB的亚基。同时,监管亚基Micu1的水平保持不变。结果表明,与实验性甲状腺功能亢进率为大鼠肝线粒体的钙保留能力与对照相比减少了2倍,证明了甲状腺素大鼠肝线粒体的抗性降低,诱导MPT孔隙。所观察到的改变与关于Cyclophilin D的增加量的数据,该数据是已知的,该数据量是已知的用于调节MPT孔隙开口和在具有实验性甲状腺功能亢进的大鼠大鼠中编码线粒体环托氨酸蛋白D的细胞孔开口和表达的线粒体基质肽基 - 脯氨酰异构酶。

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