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叶酸五谷氨酸和叶酸六谷氨酸介导一碳代谢。

Folate pentaglutamate and folate hexaglutamate mediated one-carbon metabolism.

作者信息

Brody T, Watson J E, Stokstad E L

出版信息

Biochemistry. 1982 Jan 19;21(2):276-82. doi: 10.1021/bi00531a012.

Abstract

The proposal that folate polyglutamate cofactors of different chain lengths function differently in metabolism was investigated. We identified the one-carbon units present in rat liver folates within each of the liver folate polyglutamate groups, the folate penta-, hexa-, and heptaglutamates. This identification revealed that at the pentaglutamate level, 5-methyl-H4folate was the major form, accounting for 18% of the total liver folates, with small amounts of H4folate. At the hexaglutamate level, 5-methyl-H4folate and H4folate were major forms, accounting for 17% and 22% of the liver folates, respectively. At the heptaglutamate level, 5-methyl-H4folate occurred in small amounts while H4folate predominated. The rats used here had been fed a diet low in methionine and were exposed to N2O gas. These results are qualitatively similar to those from rat brain [Brody, T., Shin, Y. S., & Stokstad, E. L. R. (1976) J. Neurochem. 27, 409--413] where 5-methyl-H4folate was a major fraction of the folate pentaglutamates but a minor, if detectable, part of the hexa- and heptaglutamates. The folates 5-methyl-H4PteGlu5-7 were metabolically active in the liver, as illustrated by the severe contraction in the amounts of these folates following an injection of methionine. This indicates that "folate-binding proteins" do not prevent 5-methyl-H4folates from entering into one-carbon metabolism.

摘要

关于不同链长的叶酸多聚谷氨酸辅因子在代谢中发挥不同作用的提议得到了研究。我们确定了大鼠肝脏中每个肝脏叶酸多聚谷氨酸组内(叶酸五聚谷氨酸、六聚谷氨酸和七聚谷氨酸)存在的一碳单位。这一确定表明,在五聚谷氨酸水平,5-甲基-H4叶酸是主要形式,占肝脏叶酸总量的18%,还有少量的H4叶酸。在六聚谷氨酸水平,5-甲基-H4叶酸和H4叶酸是主要形式,分别占肝脏叶酸的17%和22%。在七聚谷氨酸水平,5-甲基-H4叶酸含量较少,而H4叶酸占主导。这里使用的大鼠喂食了低蛋氨酸饮食并暴露于N2O气体中。这些结果在性质上与大鼠大脑的结果相似[Brody, T., Shin, Y. S., & Stokstad, E. L. R. (1976) J. Neurochem. 27, 409--413],其中5-甲基-H4叶酸是叶酸五聚谷氨酸的主要部分,但在六聚谷氨酸和七聚谷氨酸中是次要部分(如果可检测到的话)。5-甲基-H4PteGlu5 - 7形式的叶酸在肝脏中具有代谢活性,如注射蛋氨酸后这些叶酸的量严重减少所示。这表明“叶酸结合蛋白”不会阻止5-甲基-H4叶酸进入一碳代谢。

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