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一种固氮细菌的丙酮酸代谢

Pyruvate metabolism by a nitrogen-fixing bacterium.

作者信息

Hamilton I R, Burris R H, Wilson P W

出版信息

Biochem J. 1965 Aug;96(2):383-9. doi: 10.1042/bj0960383.

Abstract
  1. The major products of pyruvate dissimilation by washed intact cells of Achromobacter N4-B under nitrogen-fixing conditions are acetate and formate. The formation of succinate and isocitrate and the assimilated amino acids requires carbon dioxide fixation. 2. The products formed by cells incubated with pyruvate in an atmosphere of nitrogen were compared with those formed by cells incubated in an atmosphere of helium. Production of hydrogen and the formation of succinate were greater under helium than under nitrogen. Production of acetate and formate and the utilization of pyruvate were the same in both atmospheres. 3. Cell-free preparations, unlike intact cells of Achromobacter N4-B, do not evolve hydrogen, but do produce lactate. 4. It is suggested that, in cell-free preparations incapable of fixing nitrogen, electrons are accepted from pyruvate to form lactate rather than being used for the reductive formation of ammonia and hydrogen.
摘要
  1. 在固氮条件下,无色杆菌N4 - B洗涤后的完整细胞对丙酮酸异化作用的主要产物是乙酸盐和甲酸盐。琥珀酸盐、异柠檬酸盐以及同化氨基酸的形成需要二氧化碳固定。2. 将在氮气氛围中用丙酮酸培养的细胞所形成的产物与在氦气氛围中培养的细胞所形成的产物进行比较。在氦气氛围下氢气的产生和琥珀酸盐的形成比在氮气氛围下更多。乙酸盐和甲酸盐的产生以及丙酮酸的利用在两种氛围中是相同的。3. 与无色杆菌N4 - B的完整细胞不同,无细胞制剂不会释放氢气,但会产生乳酸。4. 有人提出,在无法固氮的无细胞制剂中,电子从丙酮酸被接受以形成乳酸,而不是用于氨和氢气的还原形成。

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An electron transport factor from Clostridium pasteurianum.来自巴氏梭菌的一种电子传递因子。
Biochem Biophys Res Commun. 1962 Jun 4;7:448-52. doi: 10.1016/0006-291x(62)90333-9.
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HYDROGENASE AND NITROGENASE IN A NITROGEN-FIXING BACTERIUM.固氮细菌中的氢化酶和固氮酶
Proc Natl Acad Sci U S A. 1964 Sep;52(3):637-41. doi: 10.1073/pnas.52.3.637.
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