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2
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Uridine-5'-monophosphate pyrophosphorylase activity from Escherichia coli.来自大肠杆菌的尿苷-5'-单磷酸焦磷酸化酶活性
FEBS Lett. 1969 Nov 12;5(3):211-213. doi: 10.1016/0014-5793(69)80334-0.
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Enzyme changes during Bacillus subtilis sporulation caused by deprivation of guanine nucleotides.鸟嘌呤核苷酸缺乏导致枯草芽孢杆菌孢子形成过程中的酶变化。
J Bacteriol. 1980 Dec;144(3):1119-25. doi: 10.1128/jb.144.3.1119-1125.1980.
3
Accumulation of guanosine tetraphosphate and guanosine pentaphosphate in Myxococcus xanthus during starvation and myxospore formation.在饥饿和粘孢子形成过程中,鸟苷四磷酸和鸟苷五磷酸在黄色粘球菌中的积累。
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Stimulatory effect of low ATP pools on transport of purine nucleosides in cells of Escherichia coli.低ATP库对大肠杆菌细胞中嘌呤核苷转运的刺激作用。
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Purine salvage pathways of Bacillus subtilis and effect of guanine on growth of GMP reductase mutants.枯草芽孢杆菌的嘌呤补救途径及鸟嘌呤对GMP还原酶突变体生长的影响。
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Initiation of Bacillus subtilis sporulation by the stringent response to partial amino acid deprivation.通过对部分氨基酸剥夺的严紧反应启动枯草芽孢杆菌的孢子形成。
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Response of guanosine 5'-triphosphate concentration to nutritional changes and its significance for Bacillus subtilis sporulation.鸟苷 5'-三磷酸浓度对营养变化的响应及其对枯草芽孢杆菌孢子形成的意义。
J Bacteriol. 1981 May;146(2):605-13. doi: 10.1128/jb.146.2.605-613.1981.
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Mechanism of adenine inhibition in adenine-sensitive mutants of Salmonella typhimurium.鼠伤寒沙门氏菌腺嘌呤敏感突变体中腺嘌呤抑制的机制。
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枯草芽孢杆菌中嘌呤及其他化合物摄取的特异性与调控

Specificity and control of uptake of purines and other compounds in Bacillus subtilis.

作者信息

Beaman T C, Hitchins A D, Ochi K, Vasantha N, Endo T, Freese E

出版信息

J Bacteriol. 1983 Dec;156(3):1107-17. doi: 10.1128/jb.156.3.1107-1117.1983.

DOI:10.1128/jb.156.3.1107-1117.1983
PMID:6417108
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC217955/
Abstract

Certain nucleotides control adaptation to changing nutrition or differentiation (sporulation) resulting from a general nutritional deficiency. To maintain the adaptation or differentiation process, once it has started, it may have been important for cells to evolve several independent and metabolically controllable systems enabling the uptake and metabolism of various nucleic acid bases or nucleosides. We have analyzed the cellular reactions with these compounds by measuring both their effect on growth and their uptake in appropriately chosen auxotrophic and uptake mutants. We have found one uptake system for guanine and hypoxanthine, another one for guanosine and inosine, and three other systems for adenine, adenosine, and uracil. The uptake systems of guanine-hypoxanthine and guanosine-inosine are inhibited by the stringent response to amino acid deprivation (increase of guanosine 5'-diphosphate-3'-diphosphate), but they do not depend on the concentration of GTP, which decreases during sporulation. In contrast, the uptake of Ura depends on the presence of GTP, regardless of whether a GTP decrease was produced by the stringent response or otherwise. This was the only uptake system whose decrease was always correlated with the onset of sporulation. The uptake of other compounds, e.g., alpha-methylglucoside and alpha-aminoisobutyric acid, decreased under some, but not all, sporulation conditions.

摘要

某些核苷酸可控制细胞对营养变化的适应或因普遍营养缺乏导致的分化(孢子形成)。为维持适应或分化过程,一旦该过程启动,细胞进化出几个独立且可代谢调控的系统,以便摄取和代谢各种核酸碱基或核苷,这可能很重要。我们通过测量这些化合物对生长的影响以及它们在适当选择的营养缺陷型和摄取突变体中的摄取情况,分析了细胞与这些化合物的反应。我们发现了一个鸟嘌呤和次黄嘌呤的摄取系统,另一个鸟苷和肌苷的摄取系统,以及另外三个腺嘌呤、腺苷和尿嘧啶的摄取系统。鸟嘌呤 - 次黄嘌呤和鸟苷 - 肌苷的摄取系统会被对氨基酸剥夺的严紧反应(鸟苷5'-二磷酸-3'-二磷酸增加)所抑制,但它们不依赖于孢子形成过程中会减少的GTP浓度。相比之下,尿嘧啶的摄取取决于GTP的存在,无论GTP的减少是由严紧反应还是其他原因引起的。这是唯一一种摄取系统,其减少总是与孢子形成的开始相关。其他化合物,如α-甲基葡萄糖苷和α-氨基异丁酸的摄取,在某些但不是所有的孢子形成条件下会减少。