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首页> 外文期刊>Journal of bacteriology >Coupling of Phosphorylation and Carbon Dioxide Fixation in Extracts of Thiobacillus thioparus
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Coupling of Phosphorylation and Carbon Dioxide Fixation in Extracts of Thiobacillus thioparus

机译:硫代硫杆菌的提取物中磷酸化和二氧化碳固定的耦合

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Johnson, Emmett J. (University of Mississippi Medical Center, Jackson), and Harry D. Peck, Jr. Coupling of phosphorylation and carbon dioxide fixation in extracts of Thiobacillus thioparus. J. Bacteriol. >89:1041–1050. 1965.—A cell-free system from Thiobacillus thioparus which fixes large quantities of C14O2 in the presence of ribose-5-phosphate, adenosine triphosphate (ATP), and Mg++ has been described. The specific activity (0.041 μmole of ribulose-1,5-diphosphate min?1 mg?1 protein) of the CO2-fixing system approaches that of green plants, and is further evidence for the importance of the role of carboxydismutase in the thiobacilli. In addition to ATP, adenosine diphosphate (ADP) and other nucleoside triphosphates served with varying degrees of effectiveness for the fixation of C14O2. The ATP requirement for CO2 fixation was partially replaced under aerobic conditions by a combination of SO3=, PO4≡, and adenosine monophosphate (AMP). Phosphorylation and CO2 fixation were separated in time by first incubating SO3= and AMP aerobically, and then anaerobically introducing C14O3= and ribose-5-phosphate into the reaction mixture. During the first incubation, P32O4≡ was esterified into nucleotides, mainly ADP, and in the second incubation C14O2 was fixed, with the concomitant utilization of almost equal amounts of the esterified phosphate. These data provide the first in vitro evidence for the mechanism of the coupling of CO2 fixation and phosphorylation in T. thioparus. The fixation of C14O2 was shown to be almost completely inhibited by AMP. This inhibition was not due to the conversion of ATP to ADP by adenylic kinase, or to the binding of magnesium by the nucleotide. The inhibition was specific for AMP, since other mononucleotides, adenosine, and adenine did not inhibit. The AMP regulation of CO2 fixation may represent a basic control mechanism in autotrophic metabolism.
机译:Johnson,Emmett J.(密西西比大学医学中心,杰克逊)和Harry D. Peck,Jr.硫代硫杆菌(emiothillus thioparus)提取物中磷酸化和二氧化碳固定的耦合。 J.细菌。 > 89: 1041–1050。 1965年。一种硫代硫杆菌(Thiobacillus thioparus)的无细胞系统,在核糖5磷酸存在下可固定大量C 14 O 2 。 ,三磷酸腺苷(ATP)和Mg ++ 。 CO 2 固定系统的比活(0.041μmol核糖-1,5-二磷酸min ?1 mg ?1 蛋白)接近绿色植物的水平,并且进一步证明了羧歧化酶在硫杆菌中的重要性。除ATP外,二磷酸腺苷(ADP)和其他核苷三磷酸在固定C 14 O 2 方面也具有不同程度的有效性。在有氧条件下,CO 2 固定的ATP需求被SO 3 = ,PO 4 和单磷酸腺苷(AMP)。通过先将SO 3 = 和AMP厌氧培养,然后厌氧引入C 14 <,来及时分离磷酸化和CO 2 固定。 / sup> O 3 = 和5磷酸核糖进入反应混合物。在第一次孵育中,P 32 O 4 被酯化为核苷酸,主要是ADP,在第二次孵育中,C 14 < / sup> O 2 是固定的,伴随着几乎等量的酯化磷酸酯的利用。这些数据为 T中CO 2 固定和磷酸化偶联的机理提供了首次体外证据。 thioparus 。结果表明,AMP几乎完全抑制了C 14 O 2 的固定。这种抑制不是由于腺苷激酶将ATP转化为ADP,也不是由于核苷酸结合了镁。由于其他单核苷酸,腺苷和腺嘌呤均不抑制,因此该抑制对AMP具有特异性。 AMP对CO 2 固定的调节可能代表了自养代谢的基本控制机制。

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