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辅酶与胞质和线粒体苹果酸脱氢酶不同电离状态的结合。

Coenzyme binding at different ionization states of cytoplasmic and mitochondrial malate dehydrogenase.

作者信息

Schwerdtfeger K, Woenckhaus C, Parker D M, Holbrook J J

出版信息

Z Naturforsch C Biosci. 1982 May-Jun;37(5-6):547-9. doi: 10.1515/znc-1982-5-632.

Abstract

pH-titrations with NADH show two ionizable groups in mitochondrial and cytoplasmic malate dehydrogenase, the first with a pKa in the range 6.8-8.3 for the mitochondrial and 6.4-7.8 for the cytoplasmic enzyme, the second with a lower limit at 10.2 resp. 11. Comparison with bis-(dihydronicotinamide)-dinucleotide and dihydronicotinamide-ribosyl-P2-ribose-pyrophosphate instead of NADH indicates that the second alkaline ionization is caused by a residue placed near the adenine binding site of the active centre of the two isoenzymes. Binding studies with NADH and NAD+ give evidence for the participation of a group in the mitochondrial enzyme with pKa 6.8, deprotonation of which is necessary for detectable association of NAD+. In contrast the fixation of NAD+ to the cytoplasmic enzyme is independent of pH.

摘要

用NADH进行的pH滴定显示,线粒体和细胞质苹果酸脱氢酶中有两个可电离基团,第一个基团的pKa,线粒体酶在6.8 - 8.3范围内,细胞质酶在6.4 - 7.8范围内,第二个基团的下限分别为10.2和11。用双(二氢烟酰胺)-二核苷酸和二氢烟酰胺-核糖-P2-核糖焦磷酸代替NADH进行比较表明,第二个碱性电离是由位于两种同工酶活性中心腺嘌呤结合位点附近的一个残基引起的。用NADH和NAD⁺进行的结合研究表明,线粒体酶中有一个pKa为6.8的基团参与其中,该基团去质子化是NAD⁺可检测结合所必需的。相比之下,NAD⁺与细胞质酶的结合与pH无关。

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