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脑细胞质和线粒体己糖激酶催化特性的差异。

Differences in catalytic properties between cerebral cytoplasmic and mitochondrial hexokinases.

作者信息

Thompson M F, Bachelard H S

出版信息

Biochem J. 1977 Mar 1;161(3):593-8. doi: 10.1042/bj1610593.

Abstract
  1. Clear kinetic differences between cytoplasmic and mitochondrial forms of type-I cerebral hexokinase were demonstrated from experiments performed under identical conditions on three (cytoplasmic, bound mitochondrial and solubilized mitochondrial) preparations of the enzyme. 2. Whereas the Michaelis constant for glucose (KmGlc) was consistent, that for MgATP2- (KmATP) was lower in the cytoplasmic than in the two mitochondrial preparations. The substrate dissociation constants (KsGlc and KsATP) were both higher in the cytoplasmic than in the mitochondrial preparations. A further difference in the substrate kinetic patterns was that KmATP=KmATP for the cytoplasmic enzyme, in contrast with the mitochondrial enzyme, where KmATP was clearly not equal to KsATP [Bachelard et al. (1971) Biochem. J. 123, 707-715]. 3. Dead-end inhibition produced by N-acetyl-glucosamine and by AMP also exhibited different quantitative kinetic patterns for the two enzyme sources. Both inhibitions gave Ki values similar or equal to those of Ki' for the cytoplasmic activity, whereas Ki was clearly not equal to Ki' for the mitochondrial activity. 4. All of these studies demonstrated the similarity of the two mitochondrial activities (particulate and solubilized), which were both clearly different from the cytoplasmic activity. 5. The analysis gives a practical example of our previous theoretical treatment on the derivation of true inhibition constants. 6. The results are discussed in terms of the function of cerebral hexokinases.
摘要
  1. 在相同条件下,对该酶的三种制剂(细胞质、结合线粒体和可溶性线粒体)进行实验,结果表明I型脑己糖激酶的细胞质和线粒体形式存在明显的动力学差异。2. 葡萄糖的米氏常数(KmGlc)是一致的,而细胞质中MgATP2-的米氏常数(KmATP)低于两种线粒体制剂中的该常数。细胞质中底物解离常数(KsGlc和KsATP)均高于线粒体制剂中的该常数。底物动力学模式的另一个差异是,细胞质酶的KmATP = KmATP,而线粒体酶的KmATP明显不等于KsATP [巴彻拉德等人(1971年)《生物化学杂志》123卷,707 - 715页]。3. N - 乙酰葡糖胺和AMP产生的终产物抑制对两种酶源也表现出不同的定量动力学模式。两种抑制作用对细胞质活性给出的Ki值与Ki'值相似或相等,而对线粒体活性,Ki明显不等于Ki'。4. 所有这些研究都证明了两种线粒体活性(颗粒状和可溶性)的相似性,它们都明显不同于细胞质活性。5. 该分析给出了我们之前关于推导真实抑制常数的理论处理的一个实际例子。6. 根据脑己糖激酶的功能对结果进行了讨论。

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