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高等植物的D-甘油醛-3-磷酸脱氢酶

D-glyceraldehyde 3-phosphate dehydrogenases of higher plants.

作者信息

Schulman M D, Gibbs M

出版信息

Plant Physiol. 1968 Nov;43(11):1805-12. doi: 10.1104/pp.43.11.1805.

Abstract

The d-glyceraldehyde 3-P dehydrogenases of spinach leaf, pea seed, and pea shoot were purified. The NADP and NAD-linked enzymes of either spinach leaves and pea shoots could not be separated. Changes in the ratio of NADP- to NAD-linked activity of the spinach leaf and pea shoot enzymes were observed during both purification and storage of crude extracts. The spinach leaf, pea shoot, and pea seed enzymes differ electrophoretically from each other and from the rabbit muscle enzyme. The pea seed and shoot enzymes contain bound nucleotide cofactor, resist proteolytic attack, have similar Michaelis-Menton kinetic constants and are competitively inhibited by d-sedoheptulose-7-phosphate and d-sedoheptulose 1,7-diphosphate. Charcoal removes the bound nucleotide from the pea seed enzyme but not from the pea shoot enzymes. NADP and NADPH were found to inhibit the reductive but not oxidative reaction catalyzed by the charcoal treated seed enzyme. The function of the pea shoot NADP and NAD-linked enzymes in chloroplast metabolism is discussed in regard to their location and catalytic properties. Although the NADP-linked activity can be assigned a primary, if not exclusive function in photosynthesis, the assignment of a distinct metabolic function to the NAD-linked activity cannot be made at present.

摘要

菠菜叶、豌豆种子和豌豆嫩梢中的d-甘油醛3-磷酸脱氢酶被纯化。菠菜叶和豌豆嫩梢中与NADP和NAD相关的酶无法分离。在粗提物的纯化和储存过程中,观察到菠菜叶和豌豆嫩梢酶的NADP与NAD相关活性的比例变化。菠菜叶、豌豆嫩梢和豌豆种子的酶在电泳上彼此不同,也与兔肌肉酶不同。豌豆种子和嫩梢的酶含有结合的核苷酸辅因子,抗蛋白水解攻击,具有相似的米氏动力学常数,并被d-景天庚酮糖-7-磷酸和d-景天庚酮糖1,7-二磷酸竞争性抑制。活性炭可去除豌豆种子酶中的结合核苷酸,但不能去除豌豆嫩梢酶中的结合核苷酸。发现NADP和NADPH抑制经活性炭处理的种子酶催化的还原反应,但不抑制氧化反应。关于豌豆嫩梢中与NADP和NAD相关的酶在叶绿体代谢中的功能,根据它们的位置和催化特性进行了讨论。尽管与NADP相关的活性在光合作用中可被赋予主要功能(即使不是唯一功能),但目前尚不能为与NAD相关的活性赋予独特的代谢功能。

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