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首页> 外文期刊>Journal of Cell and Animal Biology >Purification and characterizations of NAD dependent isocritrate dehydrogenase from human kidney mitochondria
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Purification and characterizations of NAD dependent isocritrate dehydrogenase from human kidney mitochondria

机译:NAD依赖的人肾脏线粒体异辛酸盐酸盐脱氢酶的纯化和表征

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NAD-IDH (Nicotinamide adenine dinucleotide?socitric dehydrogenase) has been purified in 1216-fold with a total recovery of 7.5% from the mitochondria of human kidney by using a combination of affinity chromatography with the anion-exchange matrix that allowed obtaining a preparation of high purity. The shape of the peak from Sephacryl S-100 and the results from SDS-PAGE confirm that the enzyme is a tetramer with subunits of 80,000 each, and a native molecular mass of about 320,000. The enzyme shows activity in the absence of any divalent metal ions, but Mn+2?is a better activator than Mg+2?at lower concentrations (0.5 mM), but it will inhibit the enzyme at higher concentrations (2 mM). ATP (Adenosine triphosphate) and NADH inhibit the enzyme competitively according to Lineweaver-Burk plot. The NAD-IDH does not indicate a homotropic cooperative effect of isocitrate in either the absence or presence of ADP. Increasing concentrations of NAD decrease the Km of isocitrate while increasing levels of isocitrate lower the Km of NAD. Km of either isocitrate or NAD is lowered further in the presence of ADP. The inhibition by ATP (or NADH) cannot be counteracted by ADP in the presence of isocitrate, so ADP cannot enhance NAD-IDH activity nor reverse inhibition by ATP (or NADH), while isocitrate will bind to the enzyme and prevent it from interacting with ADP.?The activity of NAD-IDH in mitochondria is probably controlled in a complex way by NADH, ATP and divalent ions.
机译:NAD-IDH(烟酰胺腺嘌呤二核苷酸?社会脱氢酶)已通过亲和色谱法与阴离子交换基质结合使用,纯化了1216倍,从人肾线粒体中总回收率为7.5%,从而获得了高纯度。来自Sephacryl S-100的峰的形状和SDS-PAGE的结果证实了该酶是四聚体,每个亚基为80,000,天然分子量约为320,000。该酶在不存在任何二价金属离子的情况下显示出活性,但是在较低浓度(0.5 mM)下,Mn + 2?比Mg + 2?是更好的活化剂,但在较高浓度(2 mM)下会抑制酶。根据Lineweaver-Burk图,ATP(三磷酸腺苷)和NADH竞争性抑制该酶。 NAD-IDH在不存在或存在ADP的情况下均未表明异柠檬酸的同向协同作用。增加NAD的浓度会降低异柠檬酸的Km,而增加异柠檬酸的水平则会降低NAD的Km。在ADP存在下,异柠檬酸或NAD的Km进一步降低。 ATP(或NADH)的抑制作用不能在异柠檬酸的存在下被ADP抵消,因此ADP无法增强NAD-IDH活性,也不能逆转ATP(或NADH)的抑制作用,而异柠檬酸会与酶结合并阻止其与酶相互作用ADP。线粒体中NAD-IDH的活性可能由NADH,ATP和二价离子以复杂的方式控制。

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