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Bacillus subtilis guanine deaminase is encoded by the yknA gene and is induced during growth with purines as the nitrogen source

机译:枯草芽孢杆菌脱氨蝶脱蝶酶被Ykna基因编码,并且在嘌呤生长期间诱导为氮源

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Bacillus subtilis can utilize the purine bases adenine, hypoxanthine and xanthine as nitrogen sources. The utilization of guanine as a nitrogen source is reported here. The first step is the deamination of guanine to xanthine catalysed by guanine deaminase (GDEase). To isolate mutants defective in GDEase activity, a collection of mutant strains was screened for strains unable to use guanine as a nitrogen source. The strain BFA1819 (yknA) showed the expected phenotype and no GDEase activity could be detected in this strain. A new name for yknA, namely gde, is proposed. The gde gene encodes a 156 amino acid polypeptide and was preceded by a promoter sequence that is recognized by the σA form of RNA polymerase. High levels of GDEase were found in cells grown with purines and intermediary compounds of the purine catabolic pathway as nitrogen sources. Allantoic acid, most likely, is a low molecular mass inducer molecule. The level of GDEase was found to be subjected to global nitrogen control exerted by the GlnA/TnrA-dependent signalling pathway. The two regulatory proteins of this pathway, TnrA and GlnR, indirectly and positively affected gde expression. This is the first instance of a gene whose expression is positively regulated by GlnR. The GDEase amino acid sequence shows no homology with the mammalian enzyme. In agreement with this are the different physiological roles for the two enzymes.
机译:枯草芽孢杆菌可以利用嘌呤碱基,次黄嘌呤和黄嘌呤作为氮源。在此报告了作为氮源的鸟嘌呤的利用。第一步是通过鸟嘌呤脱氨酶(GDEAS)催化的鸟嘌呤脱氨基。为了将突变体分离在GDEAS活性中有缺陷,筛选突变菌株的收集,用于不能使用鸟嘌呤作为氮源的菌株。菌株BFA1819(YKNA)显示预期表型,并且在该菌株中可以检测到GDEAS活性。提出了Ykna,即GDE的新名称。 GDE基因编码156个氨基酸多肽,并且在σa形式的RNA聚合酶识别的启动子序列之前。在用嘌呤分解代谢途径的嘌呤和中间体化合物生长的细胞中发现了高水平的GEASE作为氮源作为氮源。杏酸,最有可能是低分子质量诱导分子。发现GDEAS的水平受到通过GLNA / TNRA依赖性信号通路施加的全局氮控制。该途径的两种调节蛋白,TNRA和GLNR,间接且积极影响GDE表达。这是一种基因的第一个实例,其表达由GLNR积极调节。 GEASE氨基酸序列显示出与哺乳动物酶的同源性。同意这是两种酶的不同生理作用。

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