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铜绿假单胞菌利用L-组氨醇突变体的分析。

Analysis of an L-histidinol-utilizing mutant of Pseudomonas aeruginosa.

作者信息

Dhawale M R, Creaser E H

出版信息

J Gen Microbiol. 1975 Dec;91(2):241-8. doi: 10.1099/00221287-91-2-241.

Abstract

Transductional analysis was applied to the Pseudomonas aeruginosa mutant PAO14 (hnc-1). This mutant can utilize L-histidinol as sole source of carbon and nitrogen and has a 60-fold increased histidinol dehydrogenase (HDH) content (Dhawale, Creaser & Loper, 1972). Transductional analysis was carried out using 18 histidine-requiring mutants to see where the hnc-1 locus maps in relation to the structural genes of histidine biosynthesis. The hnc-1 marker cotransduced with group IV genes at 97 to 100 % and not at all with group I, which is known to be the structural gene for HDH. The data obtained in the studies of Km (histidinol) and Km (NAD), and the effect of pH and temperature on the HDH activity from PAO1 and PAO14 are in full agreement with the genetic data that the hnc-1 mutation is not in the structural gene for HDH. It is suggested that hnc-1 may be a mutation in a regulatory gene affecting HDH synthesis in PAO14 and may map close to his-IV whose function in histidine biosynthesis is not known.

摘要

转导分析应用于铜绿假单胞菌突变体PAO14(hnc-1)。该突变体能够利用L-组氨醇作为唯一的碳源和氮源,并且组氨醇脱氢酶(HDH)含量增加了60倍(Dhawale、Creaser和Loper,1972年)。使用18个需要组氨酸的突变体进行转导分析,以确定hnc-1基因座相对于组氨酸生物合成结构基因的定位。hnc-1标记与IV组基因共转导的频率为97%至100%,与已知为HDH结构基因的I组基因完全不共转导。在对Km(组氨醇)和Km(NAD)的研究以及pH和温度对PAO1和PAO14中HDH活性的影响中获得的数据,与hnc-1突变不在HDH结构基因中的遗传数据完全一致。有人认为,hnc-1可能是一个影响PAO14中HDH合成的调节基因突变,可能位于与his-IV紧密相邻的位置,其在组氨酸生物合成中的功能尚不清楚。

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