Departamento de Bioquímica, Instituto de Ciências Básicas da Saúde, Universidade Federal do Rio Grande do Sul, Porto Alegre, RS, Brazil.
Life Sci. 2010 May 22;86(21-22):825-31. doi: 10.1016/j.lfs.2010.04.003. Epub 2010 Apr 20.
We investigated the in vitro effects of 3-hydroxydodecanoic (3HDA), 3-hydroxytetradecanoic (3HTA) and 3-hydroxypalmitic (3HPA) acids, which accumulate in tissues of patients affected by mitochondrial trifunctional protein (MTP) and isolated long-chain 3-hydroxyacyl-CoA dehydrogenase (LCHAD) deficiencies, on various parameters of energy homeostasis in mitochondrial preparations from brain of young rats.
We measured the respiratory parameters state 4, state 3, respiratory control ratio (RCR) and ADP/O ratio by the rate of oxygen consumption, as well as the mitochondrial membrane potential and the matrix NAD(P)H levels in the presence of the fatty acids.
We found that 3HDA, 3HTA and 3HPA markedly increased state 4 respiration and diminished the RCR using glutamate plus malate or succinate as substrates. 3HTA and 3HPA also diminished the mitochondrial membrane potential and the matrix NAD(P)H levels. In addition, 3HTA decreased state 3 respiration using glutamate/malate, but not pyruvate/malate or succinate as substrates. Our data indicate that the long-chain 3-hydroxy fatty acids that accumulate in LCHAD/MTP deficiencies act as uncouplers of oxidative phosphorylation, while 3HTA also behaves as a metabolic inhibitor.
It is presumed that impairment of brain energy homeostasis caused by these endogenous accumulating compounds may contribute at least in part to the neuropathology of LCHAD/MTP deficiencies.
我们研究了在堆积于患有线粒体三功能蛋白(MTP)和孤立的长链 3-羟酰基辅酶 A 脱氢酶(LCHAD)缺乏症患者组织中的 3-羟基十二烷酸(3HDA)、3-羟基十四烷酸(3HTA)和 3-羟基棕榈酸(3HPA)等长链 3-羟基脂肪酸对年轻大鼠脑线粒体制剂中各种能量稳态参数的体外影响。
我们通过耗氧量测量呼吸参数状态 4、状态 3、呼吸控制比(RCR)和 ADP/O 比,以及存在脂肪酸时线粒体膜电位和基质 NAD(P)H 水平。
我们发现 3HDA、3HTA 和 3HPA 明显增加了谷氨酸加苹果酸或琥珀酸作为底物时的状态 4 呼吸,并降低了 RCR。3HTA 和 3HPA 还降低了线粒体膜电位和基质 NAD(P)H 水平。此外,3HTA 降低了谷氨酸/苹果酸但不降低丙酮酸/苹果酸或琥珀酸作为底物时的状态 3 呼吸。我们的数据表明,在 LCHAD/MTP 缺乏症中积累的长链 3-羟基脂肪酸充当氧化磷酸化的解偶联剂,而 3HTA 也表现为代谢抑制剂。
据推测,这些内源性积累化合物对脑能量稳态的损害至少部分导致了 LCHAD/MTP 缺乏症的神经病理学。