首页> 美国卫生研究院文献>Biochemical Journal >Cleavage of malyl-coenzyme A into acetyl-coenzyme A and glyoxylate by Pseudomonas AM1 and other C1-unit-utilizing bacteria
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Cleavage of malyl-coenzyme A into acetyl-coenzyme A and glyoxylate by Pseudomonas AM1 and other C1-unit-utilizing bacteria

机译:假单胞菌AM1和其他利用C1的细菌将苹果基辅酶A裂解为乙酰辅酶A和乙醛酸

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摘要

1. Malyl-CoA lyase was found in high activity in extracts of Pseudomonas AM1, Pseudomonas MA, Pseudomonas MS, Hyphomicrobium X and Methylosinus trichosporium. 2. The enzyme cleaves (2S)-malyl-CoA into equimolar amounts of acetyl-CoA and glyoxylate in the presence of Mg2+. 3. The specific activity of malyl-CoA lyase was several-fold higher in Pseudomonas AM1 when grown on C1 compounds than when grown on C2, C3 or C4 compounds. This suggests that the enzyme plays a specially important role in C1 metabolism. 4. It is suggested that its role in C1 metabolism, in organisms utilizing the serine pathway, is to provide the glyoxylate necessary to sustain operation of this pathway. 5. The activity of malyl-CoA lyase in extracts of Pseudomonas MA, Pseudomonas MS and Hyphomicrobium X is 27–50 times higher than the activity of ATP- and CoA-dependent cleavage of malate, suggesting that the latter activity may be due to coupling of two enzymes, malate thiokinase and malyl-CoA lyase. 6. Methane-grown Pseudomonas methanica and Methylococcus capsulatus, which are not known to use the serine pathway, possess appreciable amounts of malyl-CoA lyase. Instead of being used primarily for carbon assimilation, the enzyme may here serve as a route to glycine during biosynthesis of purines and proteins.
机译:1.在假单胞菌AM1,假单胞菌MA,假单胞菌MS,Hyphomicrobium X和Methylosinus trichosporium的提取物中发现了高活性的Malyl-CoA裂解酶。 2.在Mg 2 + 存在下,酶将(2S)-苹果酰-CoA裂解为等摩尔量的乙酰-CoA和乙醛酸。 3.当在C1化合物上生长时,假单胞菌AM1中的丙二酰辅酶A裂解酶的比活性比在C2,C3或C4化合物上生长时高几倍。这表明该酶在C1代谢中起着特别重要的作用。 4.建议在利用丝氨酸途径的生物体中,其在C1代谢中的作用是提供维持该途径运行所需的乙醛酸。 5.假单胞菌MA,假单胞菌MS和Hyphomicrobium X提取物中苹果酰辅酶A裂解酶的活性比苹果酸ATP和辅酶A依赖的裂解活性高27-50倍,这表明后者的活性可能是由于偶联苹果酸硫激酶和苹果酰辅酶A裂解酶6.尚不知道使用丝氨酸途径的甲烷生长的甲烷八叠膜假单胞菌和荚膜甲基球菌具有相当数量的丙二酰辅酶A裂解酶。代替主要用于碳同化,该酶在嘌呤和蛋白质的生物合成过程中可以用作甘氨酸的途径。

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