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一种用于研究组织和亚细胞特化的多位点系统。鱼类底鳉两种主要的依赖NADP的异柠檬酸脱氢酶同工酶的pH值和温度依赖性。

A multilocus system for studying tissue and subcellular specialization. The pH and temperature dependence of the two major NADP-dependent isocitrate dehydrogenase isozymes of the fish Fundulus heteroclitus.

作者信息

Gonzalez-Villaseñor L I, Powers D A

出版信息

J Biol Chem. 1986 Sep 5;261(25):11471-7.

PMID:3745152
Abstract

In the teleost fish Fundulus heteroclitus, there are three NADP-dependent isocitrate dehydrogenase isozymes. IDH-B2 is the only cytoplasmic isozyme, and IDH-C2 dominates the mitochondria of all tissues other than liver, where IDH-A2 is expressed. Since fish are ectotherms, their intracellular temperature and pH change directly with environmental temperature. In order to evaluate the influence of these environmental parameters on a model fish NADP-isocitrate dehydrogenase system, the major cytoplasmic (IDH-B2) and mitochondrial (IDH-C2) isozymes were kinetically evaluated as a function of pH and temperature. Whereas Vfmax and KmISOCm (where ISOC is isocitrate) were pH-independent, the Km for NADP was pH-dependent for both isozymes. The cytoplasmic isozyme (IDH-B2) had smaller KmNADP values between pH 7.0 and pH 8.0 than the mitochondrial form (IDH-C2). Vfmax and Km for substrate and coenzyme were temperature-dependent. Energy of activation for IDH-B2 and IDH-C2 was 10.6 and 12.8 kcal/mol, respectively. Both proteins had delta G not equal to values of about 15.8 kcal/mol, with significantly different distributions between delta H not equal to and delta S not equal to. The cytoplasmic isozyme (IDH-B2) appears to have a greater rate of catalysis than the mitochondrial enzyme (IDH-C2) at temperatures less than 30 degrees C. Moreover, the IDH-B2 isozyme had lower KmNADP values than the IDH-C2 isozyme at all temperatures, whereas the KmISOC values for the two isozymes were indistinguishable. Our data suggest that the two major NADP-dependent isocitrate dehydrogenase isozymes have unique physiological and metabolic functions that are adapted to the tissues and cellular compartments in which they are expressed.

摘要

在硬骨鱼美洲Fundulus heteroclitus中,存在三种依赖NADP的异柠檬酸脱氢酶同工酶。IDH - B2是唯一的细胞质同工酶,而IDH - C2在除肝脏外的所有组织线粒体中占主导地位,肝脏中表达的是IDH - A2。由于鱼类是变温动物,其细胞内温度和pH值直接随环境温度变化。为了评估这些环境参数对模式鱼NADP - 异柠檬酸脱氢酶系统的影响,对主要的细胞质(IDH - B2)和线粒体(IDH - C2)同工酶在pH值和温度作用下进行了动力学评估。虽然Vfmax和KmISOCm(其中ISOC是异柠檬酸)与pH值无关,但两种同工酶的NADP的Km值都与pH值有关。在pH值7.0至8.0之间,细胞质同工酶(IDH - B2)的KmNADP值比线粒体形式(IDH - C2)小。底物和辅酶的Vfmax和Km值与温度有关。IDH - B2和IDH - C2的活化能分别为10.6和12.8千卡/摩尔。两种蛋白质的ΔG不等于值约为15.8千卡/摩尔,ΔH不等于和ΔS不等于之间的分布有显著差异。在温度低于30摄氏度时,细胞质同工酶(IDH - B2)的催化速率似乎比线粒体酶(IDH - C2)更高。此外,在所有温度下,IDH - B2同工酶的KmNADP值都低于IDH - C2同工酶,而两种同工酶的KmISOC值没有差异。我们的数据表明,两种主要的依赖NADP的异柠檬酸脱氢酶同工酶具有独特的生理和代谢功能,以适应它们所表达的组织和细胞区室。

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