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Interconversion and uptake of nucleotides nucleosides and purine bases by the marine bacterium MB22.

机译:海洋细菌MB22对核苷酸核苷和嘌呤碱基的相互转化和吸收。

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摘要

Whole cells and isolated membranes of the marine bacterium MB22 converted nucleotides present in the external medium rapidly into nucleosides and then into bases. Nucleosides and purine bases formed were taken up by distinct transport systems. We found a high-affinity common transport system for adenine, guanine, and hypoxanthine, with a Km of 40 nM. This system was inhibited noncompetitively by purine nucleosides. In addition, two transport systems for nucleosides were present: one for guanosine with a Km of 0.8 microM and another one for inosine and adenosine with a Km of 1.4 microM. The nucleoside transport systems exhibited both mixed and noncompetitive inhibition by different nucleosides other than those translocated; purine and pyrimidine bases had no effect. The transport of nucleosides and purine bases was inhibited by dinitrophenol or azide, thus suggesting that transport is energy dependent. Inside the cell all of the substrates were converted mainly into guanosine, xanthine, and uric acid, but also anabolic products, such as nucleotides and nucleic acids, could be found.
机译:海洋细菌MB22的全细胞和分离的膜将存在于外部培养基中的核苷酸迅速转化为核苷,然后转化为碱基。形成的核苷和嘌呤碱基被不同的转运系统吸收。我们发现了腺嘌呤,鸟嘌呤和次黄嘌呤的高亲和力通用转运系统,Km为40 nM。该系统被嘌呤核苷非竞争性抑制。另外,存在两种用于核苷的转运系统:一种用于鸟苷,Km为0.8 microM,另一种用于肌苷和腺苷,Km为1.4 microM。核苷转运系统表现出混合的和非竞争性的抑制作用,而不是被转运的核苷所抑制。嘌呤和嘧啶碱基无效。二硝基苯酚或叠氮化物抑制了核苷和嘌呤碱基的转运,因此表明转运是能量依赖性的。在细胞内部,所有底物主要转化为鸟嘌呤,黄嘌呤和尿酸,但也可以发现合成代谢产物,例如核苷酸和核酸。

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