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Role of adenine deaminase in purine salvage and nitrogen metabolism and characterization of the ade gene in Bacillus subtilis.

机译:腺嘌呤脱氨酶在嘌呤挽救和氮代谢中的作用以及枯草芽孢杆菌中ade基因的表征。

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摘要

The isolation of mutants defective in adenine metabolism in Bacillus subtilis has provided a tool that has made it possible to investigate the role of adenine deaminase in adenine metabolism in growing cells. Adenine deaminase is the only enzyme that can deaminate adenine compounds in B. subtilis, a reaction which is important for adenine utilization as a purine and also as a nitrogen source. The uptake of adenine is strictly coupled to its further metabolism. Salvaging of adenine is inhibited by the stringent response to amino acid starvation, while the deamination of adenine is not. The level of adenine deaminase was reduced when exogenous guanosine served as the purine source and when glutamine served as the nitrogen source. The enzyme level was essentially the same whether ammonia or purines served as the nitrogen source. Reduced levels were seen on poor carbon sources. The ade gene was cloned, and the nucleotide sequence and mRNA analyses revealed a single-gene operon encoding a 65-kDa protein. By transductional crosses, we have located the ade gene to 130 degrees on the chromosomal map.
机译:枯草芽孢杆菌中腺嘌呤代谢缺陷突变体的分离提供了一种工具,使研究生长细胞中腺嘌呤脱氨酶在腺嘌呤代谢中的作用成为可能。腺嘌呤脱氨酶是唯一可以使枯草芽孢杆菌中的腺嘌呤化合物脱氨的酶,该反应对于将腺嘌呤用作嘌呤和氮源非常重要。腺嘌呤的摄取与它的进一步代谢密切相关。对氨基酸饥饿的严格反应抑制了腺嘌呤的抢救,而对腺嘌呤的脱氨基则没有。当外源鸟嘌呤作为嘌呤源和谷氨酰胺作为氮源时,腺嘌呤脱氨酶水平降低。无论氨或嘌呤用作氮源,酶水平基本相同。碳源贫乏时水平下降。克隆了ade基因,核苷酸序列和mRNA分析揭示了一个编码65 kDa蛋白的单基因操纵子。通过转导杂交,我们已经在染色体图上将ade基因定位到130度。

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