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首页> 外文期刊>Biochemistry >Phosphonate analogues of alpha-ketoglutarate inhibit the activity of the alpha-ketoglutarate dehydrogenase complex isolated from brain and in cultured cells
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Phosphonate analogues of alpha-ketoglutarate inhibit the activity of the alpha-ketoglutarate dehydrogenase complex isolated from brain and in cultured cells

机译:α-酮戊二酸的膦酸酯类似物抑制从大脑和培养细胞中分离的α-酮戊二酸脱氢酶复合物的活性

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摘要

The alpha-ketoglutarate dehydrogenase complex (KGDHC), a control point of the tricarboxylic acid cycle, is partially inactivated in brain in many neurodegenerative diseases. Potent and specific KGDHC inhibitors are needed to probe how the reduced KGDHC activity alters brain function. Previous studies showed that succinyl phosphonate (SP) effectively inhibits muscle and Escherichia coli KGDHC To identify the phosphonates with the highest affinity toward brain KGDHC and with the greatest effect in living cells, we investigated the ability of SP and several of its ethyl esters to inhibit brain KGDHC, other alpha-keto acid-dependent enzymes, and KGDHC in intact cells. At a concentration of 0.01 mM, SP and its phosphonoethyl (PESP) and carboxyethyl (CESP) esters completely inhibited isolated brain KGDHC even in the presence of a 200-fold higher concentration of its substrate [alpha-ketoglutarate (KG)], while the diethyl (DESP) and triethyl (TESP) esters were ineffective. In cultured human fibroblasts, 0.01 mM SP, PESP, or CESP produced 70% inhibition of KGDHC. DESP and TESP were also inhibitory in the cell system, but only after preincubation, suggesting the release of their charged groups by cellular esterases. Thus, SP and its monoethyl esters target cellular KGDHC directly, while the di- and triethyl esters are activated in intact cells. When tested on other enzymes that bind KG or related a-keto acids, SP had minimal effects and its two esters (CESP and TESP) were ineffective even at a concentration (0.1 mM) 1 order of magnitude higher than that which inhibited cellular KGDHC activity. The high specificity in targeting KGDHC, penetration into cells, and minimal transformation by cellular enzymes indicate that SP and its esters should be useful in studying the effects of reduced KGDHC activity on neuronal and brain function.
机译:在许多神经退行性疾病中,α-酮戊二酸脱氢酶复合物(KGDHC)是三羧酸循环的控制点,在大脑中被部分灭活。需要有效的和特定的KGDHC抑制剂来探测降低的KGDHC活性如何改变大脑功能。先前的研究表明,琥珀酸膦酸酯(SP)有效抑制肌肉和大肠杆菌KGDHC为了鉴定对大脑KGDHC亲和力最高,对活细胞影响最大的膦酸酯,我们研究了SP及其几种乙基酯抑制肌醇的能力。完整细胞中的大脑KGDHC,其他α-酮酸依赖性酶和KGDHC。在0.01 mM的浓度下,SP及其膦酰基乙基(PESP)和羧乙基(CESP)酯即使在其底物[α-酮戊二酸酯(KG)]浓度高200倍的情况下,也能完全抑制分离的大脑KGDHC。二乙基(DESP)和三乙基(TESP)酯无效。在培养的人成纤维细胞中,0.01 mM SP,PESP或CESP对KGDHC产生70%的抑制作用。 DESP和TESP在细胞系统中也具有抑制作用,但仅在预孵育后才显示,这表明细胞酯酶释放了它们的带电基团。因此,SP及其单乙酯直接靶向细胞KGDHC,而二乙酯和三乙酯在完整细胞中被激活。在结合KG或相关α-酮酸的其他酶上进行测试时,SP的作用极小,即使其浓度(0.1 mM)比抑制细胞KGDHC活性的浓度高1个数量级,其两种酯(CESP和TESP)也无效。 。靶向KGDHC的高特异性,向细胞的渗透以及细胞酶的最小转化表明SP及其酯应可用于研究降低的KGDHC活性对神经元和大脑功能的影响。

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