首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Inactivation of beef brain alpha-ketoglutarate dehydrogenase complex by valproic acid and valproic acid metabolites. Possible mechanism of anticonvulsant and toxic actions.
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Inactivation of beef brain alpha-ketoglutarate dehydrogenase complex by valproic acid and valproic acid metabolites. Possible mechanism of anticonvulsant and toxic actions.

机译:丙戊酸和丙戊酸代谢产物使牛肉脑中的α-酮戊二酸脱氢酶复合物失活。抗惊厥和毒性作用的可能机制。

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摘要

The anticonvulsant valproic acid (VPA, 2-n-propylpentanoic acid) causes inhibition of the citric acid cycle and elevations of central nervous system (CNS) gamma-aminobutyric acid (GABA) levels, which correlates with anticonvulsant action. No unifying mechanism for these actions of VPA has won general acceptance. alpha-Ketoglutarate dehydrogenase complex (KDHC) is a critical control enzyme in the CNS. We hypothesized that VPA may be an inhibitor of this enzyme since decreased KDHC activity would reduce substrate flux through the citric acid cycle and may increase flux into GABA synthesis. To test this hypothesis, inhibition of purified beef brain KDHC by VPA and its metabolites 2-n-propylpent-2-enoic acid (delta 2,3 VPE) and their coenzyme A (CoA) derivatives were studied. Preincubation of the NADH-reduced enzyme with delta 2,3 VPE, VPA-CoA, and delta 2,3 VPE-CoA caused time-dependent inactivation, reversible by addition of CoA. Under steady-state conditions, delta 2,3 VPE and VPA-CoA were competitive inhibitors of KDHC and delta 2,3 VPE-CoA was a mixed inhibitor. These observations have implications for the molecular mechanisms of VPA action. VPA derivatives cause inactivation and inhibition of KDHC, which may explain the anticonvulsant and some toxic actions of VPA.
机译:抗惊厥药丙戊酸(VPA,2-正丙基戊酸)可抑制柠檬酸循环并抑制中枢神经系统(CNS)γ-氨基丁酸(GABA)含量,这与抗惊厥作用相关。 VPA的这些动作的统一机制尚未获得​​普遍认可。 α-酮戊二酸脱氢酶复合物(KDHC)是中枢神经系统中的关键控制酶。我们假设VPA可能是这种酶的抑制剂,因为降低的KDHC活性会降低柠檬酸循环中的底物通量,并可能增加GABA合成的通量。为了验证这一假设,研究了VPA及其代谢物2-n-丙基戊-2-烯酸(δ2,3 VPE)及其辅酶A(CoA)衍生物对纯化牛肉脑KDHC的抑制作用。用δ2,3 VPE,VPA-CoA和δ2,3 VPE-CoA预孵育NADH还原酶会导致时间依赖性失活,可通过添加CoA来逆转。在稳态条件下,δ2,3 VPE和VPA-CoA是KDHC的竞争性抑制剂,δ2,3 VPE-CoA是混合抑制剂。这些观察结果对VPA作用的分子机制有影响。 VPA衍生物导致KDHC失活和抑制,这可以解释VPA的抗惊厥作用和某些毒性作用。

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