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首页> 外文期刊>Archives of Microbiology >Factors accelerating pyrimidine production in Deinococcus radiophilus
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Factors accelerating pyrimidine production in Deinococcus radiophilus

机译:加速放射嗜热球菌嘧啶生产的因素

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In studying the pyrimidine synthesising pathway in Deinococcus radiophilus two instances of anomalous behaviour were observed. One was the strikingly different results obtained for two types of assay for carbamoyl phosphate synthetase. Both depend on the fixation of 14C from the substrate bicarbonate to give radioactive products. In the coupled assay the carbamoyl phosphate product of the enzyme is converted to carbamoyl aspartate in the presence of aspartate and aspartate transcarbamoylase. In the direct assay aspartate is omitted from the reaction mixture and the carbamoyl phosphate is converted to urea. It was found that the radioactive counts in the direct assay were about 5% of those measured in the coupled assay. The second anomaly was that omission of glutamine from both assay mixtures had no significant effect on the fixation of radioactive carbon. These results suggested that aspartate amino-N could be the source of nitrogen for glutamine synthesis by a substrate-channelled pathway which delivered glutamine to carbamoyl phosphate synthetase, and that externally added glutamine could not access its binding site on the enzyme.
机译:在研究放射嗜热球菌中嘧啶的合成途径时,观察到了两种异常行为。一种是在氨基甲酸酯磷酸合成酶的两种分析方法中获得的结果截然不同。两者都取决于底物碳酸氢盐对 14 C的固定,从而产生放射性产物。在偶联测定中,在天冬氨酸和天冬氨酸转氨甲酰酶的存在下,酶的磷酸氨基甲酰磷酸产物转化为氨基甲酰天冬氨酸。在直接测定中,从反应混合物中省略了天冬氨酸,并将氨基甲酰基磷酸酯转化为尿素。发现直接测定中的放射性计数约为偶合测定中的放射性计数的5%。第二个异常是两种检测混合物中都没有谷氨酰胺对放射性碳的固定没有显着影响。这些结果表明,天冬氨酸氨基-N可以通过底物通道途径将谷氨酰胺输送至氨基甲酰磷酸合成酶,而成为谷氨酰胺合成的氮源,并且外部添加的谷氨酰胺不能接近其在酶上的结合位点。

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