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首页> 外文期刊>The biochemical journal >Pyruvate metabolism by aminopterin-inhibited Aerobacter aerogenes
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Pyruvate metabolism by aminopterin-inhibited Aerobacter aerogenes

机译:氨基替昔林蛋白抑制的有氧气泡的丙酮酸代谢

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p1. The synthesis and utilization of both alanine (by reductive amination, oxidative deamination and transamination) and valine (by transamination only) in iAerobacter aerogenes/i are unaffected by aminopterin. These amino acids, which accumulate in aminopterin-treated cultures of this organism, are therefore considered to be formed as secondary products from the excess of pyruvate that also accumulates. 2. Oxidative metabolism of pyruvate and the synthesis of acetylmethylcarbinol by iA. aerogenes/i cells are unaltered by growth in the presence of aminopterin. 3. Cells from static and anaerobic cultures that have been treated with the folic acid antagonist in the early exponential phase have a decreased ability to cleave pyruvate to acetate and formate, and to effect the exchange of formate with the carboxyl group of pyruvate. 4. 3-Methyl-2-oxobutanoate, the keto acid precursor of valine, cannot replace pyruvate as substrate in either the phosphoroclastic or the exchange reaction./p
机译:> 1。丙氨酸(通过还原胺化,氧化脱氨基化和仲裁)和缬氨酸(仅通过缩进)在有氧飞机中的合成和利用,不受氨基蒜素的影响。因此,这些氨基酸积聚在该生物体的氨基替纳蛋白处理的培养物中,被认为是从过量的丙酮酸含量的二次产物形成。 2.丙酮酸氧化代谢及 a的合成乙酰甲基丙烯酚。通过在氨基替林的存在下生长,细胞不置换到飞机。 3.来自早期指数相中叶酸拮抗剂处理的静态和厌氧培养物的细胞具有降低的能力,使丙酮酸乙酸乙酸盐和甲酸酯切割,并实现与丙酮酸羧基的羧基交换。 4. 3-甲基-2-氧脱酸酯,缬氨酸的酮酸前体,不能将丙酮酸盐作为磷素或交换反应中的基材代替。

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  • 来源
    《The biochemical journal》 |1968年第2期|共页
  • 作者

    M. Webb;

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  • 收录信息 美国《科学引文索引》(SCI);
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