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Role of isovaleryl-CoA dehydrogenase and short branched-chain acyl-CoA dehydrogenase in the metabolism of valproic acid: implications for the branched-chain amino acid oxidation pathway

机译:异戊酰辅酶A脱氢酶和短支链酰基辅酶A脱氢酶在丙戊酸代谢中的作用:对支链氨基酸氧化途径的影响

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摘要

Many biological systems including the oxidative catabolic pathway for branched-chain amino acids (BCAAs) are affected in vivo by valproate therapy. In this study, we investigated the potential effect of valproic acid (VPA) and some of its metabolites on the metabolism of BCAAs. In vitro studies were performed using isovaleryl-CoA dehydrogenase (IVD), isobutyryl-CoA dehydrogenase (IBD), and short branched-chain acyl-CoA dehydrogenase (SBCAD), enzymes involved in the degradation pathway of leucine, valine, and isoleucine. The enzymatic activities of the three purified human enzymes were measured using optimized high-performance liquid chromatography procedures, and the respective kinetic parameters were determined in the absence and presence of VPA and the corresponding CoA and dephosphoCoA conjugates. Valproyl-CoA and valproyl-dephosphoCoA inhibited IVD activity significantly by a purely competitive mechanism with K(i) values of 74 ± 4 and 170 ± 12 μM, respectively. IBD activity was not affected by any of the tested VPA esters. However, valproyl-CoA did inhibit SBCAD activity by a purely competitive mechanism with a K(i) of 249 ± 29 μM. In addition, valproyl-dephosphoCoA inhibited SBCAD activity via a distinct mechanism (K(i) = 511 ± 96 μM) that appeared to be of the mixed type. Furthermore, we show that both SBCAD and IVD are active, using valproyl-CoA as a substrate. The catalytic efficiency of SBCAD turned out to be much higher than that of IVD, demonstrating that SBCAD is the most probable candidate for the first dehydrogenation step of VPA β-oxidation. Our data explain some of the effects of valproate on the branched-chain amino acid metabolism and shed new light on the biotransformation pathway of valproate
机译:丙戊酸治疗会在体内影响许多生物系统,包括支链氨基酸(BCAAs)的氧化分解代谢途径。在这项研究中,我们调查了丙戊酸(VPA)及其某些代谢产物对BCAAs代谢的潜在影响。使用异戊酰基-CoA脱氢酶(IVD),异丁酰-CoA脱氢酶(IBD)和短支链酰基-CoA脱氢酶(SBCAD)进行了体外研究,这些酶涉及亮氨酸,缬氨酸和异亮氨酸的降解途径。使用优化的高效液相色谱程序测量了三种纯化的人酶的酶活性,并在不存在和存在VPA以及相应的CoA和dephosphoCoA共轭物的情况下确定了各自的动力学参数。丙戊酰辅酶A和丙戊酰去磷酸CoA通过纯竞争机制显着抑制IVD活性,其K(i)值分别为74±4和170±12μM。 IBD活性不受任何测试的VPA酯的影响。但是,丙戊酰辅酶A确实通过K(i)为249±29μM的纯粹竞争机制抑制了SBCAD活性。此外,丙戊酰基-去磷酸CoA通过独特的机制(K(i)= 511±96μM)抑制了SBCAD活性,该机制似乎是混合型的。此外,我们显示,使用丙戊酰辅酶A作为底物,SBCAD和IVD均具有活性。事实证明,SBCAD的催化效率远高于IVD,这表明SBCAD是VPAβ-氧化第一步脱氢的最可能候选者。我们的数据解释了丙戊酸盐对支链氨基酸代谢的某些影响,并为丙戊酸盐的生物转化途径提供了新的思路

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