首页> 美国卫生研究院文献>Biochemical Journal >Resolution and characterization of the glycine-cleavage reaction in pea leaf mitochondria. Properties of the forward reaction catalysed by glycine decarboxylase and serine hydroxymethyltransferase.
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Resolution and characterization of the glycine-cleavage reaction in pea leaf mitochondria. Properties of the forward reaction catalysed by glycine decarboxylase and serine hydroxymethyltransferase.

机译:豌豆叶线粒体中甘氨酸裂解反应的解析和表征。甘氨酸脱羧酶和丝氨酸羟甲基转移酶催化的正向反应性质。

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摘要

High-molecular-mass proteins from pea (Pisum sativum) mitochondrial matrix retained on an XM-300 Diaflo membrane ('matrix extract') exhibited high rates of glycine oxidation in the presence of NAD+ and tetrahydropteroyl-L-glutamic acid (H4 folate) as long as the medium exhibited a low ionic strength. Serine hydroxymethyltransferase (SHMT) (4 x 53 kDa) and the four proteins of the glycine-cleavage system, including a pyridoxal phosphate-containing enzyme ('P-protein'; 2 x 97 kDa), a carrier protein containing covalently bound lipoic acid ('H-protein'; 15.5 kDa), a protein exhibiting lipoamide dehydrogenase activity ('L-protein'; 2 x 61 kDa) and an H4 folate-dependent enzyme ('T-protein'; 45 kDa) have been purified to apparent homogeneity from the matrix extract by using gel filtration, ion-exchange and phenyl-Superose fast protein liquid chromatography. Gel filtration on Sephacryl S-300 in the presence of 50 mM-KCl proved to be the key step in disrupting this complex. During the course of glycine oxidation catalysed by the matrix extract a steady-state equilibrium in the production and utilization of 5,10-methylene-H4 folate was reached, suggesting that glycine cleavage and SHMT are linked together via a soluble pool of H4 folate. The rate of glycine oxidation catalysed by the matrix extract was sensitive to the NADH/NAD+ molar ratios, because NADH competitively inhibited the reaction catalysed by lipoamide dehydrogenase.
机译:保留在XM-300 Diaflo膜('基质提取物')上的豌豆(Pisum sativum)线粒体基质中的高分子蛋白质在NAD +和四氢蝶酰-L-谷氨酸(H4叶酸)存在下表现出高甘氨酸氧化速率。只要介质表现出低离子强度即可。丝氨酸羟甲基转移酶(SHMT)(4 x 53 kDa)和甘氨酸裂解系统的四种蛋白质,包括含吡ido醛磷酸盐的酶(“ P-蛋白质”; 2 x 97 kDa),一种含有共价结合的硫辛酸的载体蛋白质('H-蛋白质'; 15.5 kDa),具有脂酰胺脱氢酶活性的蛋白质('L-蛋白质'; 2 x 61 kDa)和H4叶酸依赖性酶('T-蛋白质'; 45 kDa)已纯化至通过使用凝胶过滤,离子交换和苯基-Superose快速蛋白质液相色谱从基质提取物中获得明显的均一性。在50 mM-KCl的存在下,在Sephacryl S-300上进行凝胶过滤证明是破坏该复合物的关键步骤。在基质提取物催化的甘氨酸氧化过程中,达到了5,10-亚甲基-H4叶酸的生产和利用中的稳态平衡,这表明甘氨酸裂解和SHMT通过可溶的H4叶酸池连接在一起。基质提取物催化的甘氨酸氧化速率对NADH / NAD +摩尔比敏感,因为NADH竞争性抑制了脂酰胺脱氢酶催化的反应。

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