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回补酶的天然缺乏:解苹果酸节杆菌生长依赖L-苹果酸的基础。

Natural paucity of anaplerotic enzymes: basis for dependence of Arthrobacter pyridinolis on L-malate for growth.

作者信息

Krulwich T A, Sharon B I, Perrin L S

出版信息

J Bacteriol. 1976 Jul;127(1):179-83. doi: 10.1128/jb.127.1.179-183.1976.

Abstract

Previous work has shown that in Arthrobacter pyridinolis the transport systems for glucose and several amino acids are respiration coupled, with malate oxidation occurring concomitantly with transport. The requisite malate has to be supplied exogenously, so that growth on glucose or certain amino acids only occurs if malate is also present in the medium. These and other data suggested that A. pyridinolis might be deficient in anaplerotic enzymes, which maintain intracellular levels of dicarboxylic acids. A comparative study was undertaken of anaplerotic enzymes in A. pyridinolis and in a closely related species, A. crystallopoietes, which has respiration-coupled transport of glucose but can grow on glucose without added malate. The paucity of anaplerotic enzymes in A. pyridinolis and its probable relationship to the malate requirement for growth on glucose were documented as follows: (i) A. crystallopoietes, but not A. pyridinolis, possesses phosphoenolpyruvate carboxylase activity, and neither species contains pyruvate carboxylase; (ii) both A. pyridinolis and A. crystallopoietes possess glyoxylate pathways that are induced by acetate but not by hexoses; (iii) isocitrate lyase-deficient mutants of A. pyridinolis fail to grow on rhamnose and fructose as well as acetate; and (iv) mutants of A. crystallopoietes that require malate for growth on glucose are deficient in phosphoenolpyruvate carboxylase.

摘要

先前的研究表明,在吡啶醇节杆菌中,葡萄糖和几种氨基酸的转运系统与呼吸作用相偶联,苹果酸氧化与转运同时发生。所需的苹果酸必须外源提供,因此只有当培养基中也存在苹果酸时,才能利用葡萄糖或某些氨基酸生长。这些以及其他数据表明,吡啶醇节杆菌可能缺乏回补酶,而回补酶可维持细胞内二羧酸的水平。对吡啶醇节杆菌和与其亲缘关系密切的晶状节杆菌中的回补酶进行了比较研究,晶状节杆菌具有与呼吸作用相偶联的葡萄糖转运系统,但在不添加苹果酸的情况下也能利用葡萄糖生长。吡啶醇节杆菌中回补酶的缺乏及其与利用葡萄糖生长时对苹果酸需求的可能关系如下所述:(i)晶状节杆菌具有磷酸烯醇式丙酮酸羧化酶活性,而吡啶醇节杆菌没有,且两种菌均不含丙酮酸羧化酶;(ii)吡啶醇节杆菌和晶状节杆菌都具有由乙酸盐而非己糖诱导的乙醛酸途径;(iii)吡啶醇节杆菌的异柠檬酸裂合酶缺陷型突变体在鼠李糖、果糖以及乙酸盐上均无法生长;(iv)晶状节杆菌中在利用葡萄糖生长时需要苹果酸的突变体缺乏磷酸烯醇式丙酮酸羧化酶。

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本文引用的文献

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Pathways of D-fructose transport in Arthrobacter pyridinolis.吡啶醇节杆菌中D-果糖的转运途径
Arch Biochem Biophys. 1974 Feb;160(2):440-4. doi: 10.1016/0003-9861(74)90418-4.
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Allosteric control of the activity of malic enzyme in Escherichia coli.大肠杆菌中苹果酸酶活性的变构调控。
Biochem Biophys Res Commun. 1968 May 23;31(4):623-7. doi: 10.1016/0006-291x(68)90524-x.

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