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与dfp相关的β-丙氨酸营养缺陷型,dfp是一个影响大肠杆菌DNA合成的基因座。

beta-Alanine auxotrophy associated with dfp, a locus affecting DNA synthesis in Escherichia coli.

作者信息

Spitzer E D, Jimenez-Billini H E, Weiss B

机构信息

Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205.

出版信息

J Bacteriol. 1988 Feb;170(2):872-6. doi: 10.1128/jb.170.2.872-876.1988.

Abstract

Strains containing the conditional-lethal dfp-707 mutation, which have a defect in DNA synthesis at 42 degrees C, were found to require either pantothenate or its precursor, beta-alanine, for growth at 30 degrees C. The auxotrophy and conditional lethality were corevertible. Through localized mutagenesis of the dfp-pyrE region of Escherichia coli, another mutation, dfp-1, was obtained. It conferred the auxotrophy but not the conditional lethality of dfp-707. Complementation analysis, performed with a set of plasmid-borne deletion and insertion mutations, revealed a correspondence between the complementation of each mutant phenotype and the production of the dfp gene product, previously identified as a 45-kilodalton flavoprotein. The dfp mutants had a normal level of aspartate-1-decarboxylase, which is the only enzyme known to produce beta-alanine in E. coli and which is specified by the distant panD gene. A prototrophic pseudorevertant of a dfp-1 strain was found to have retained the dfp mutation, to be genetically unstable, and to have an elevated level of aspartate-1-decarboxylase, suggesting that it had acquired a duplication of panD. It is not known what steps in pantothenate or DNA metabolism are affected by the mutant dfp product or how its flavin moiety may be involved.

摘要

含有条件致死性dfp - 707突变的菌株在42摄氏度时DNA合成存在缺陷,发现它们在30摄氏度下生长需要泛酸盐或其前体β - 丙氨酸。这种营养缺陷型和条件致死性是可共回复的。通过对大肠杆菌dfp - pyrE区域进行定位诱变,获得了另一个突变体dfp - 1。它表现出dfp - 707的营养缺陷型,但没有条件致死性。用一组质粒携带的缺失和插入突变进行互补分析,揭示了每个突变体表型的互补与dfp基因产物的产生之间的对应关系,dfp基因产物先前被鉴定为一种45千道尔顿的黄素蛋白。dfp突变体中天门冬氨酸 - 1 - 脱羧酶水平正常,天门冬氨酸 - 1 - 脱羧酶是大肠杆菌中已知的唯一产生β - 丙氨酸的酶,由较远的panD基因编码。发现dfp - 1菌株的一个原养型假回复体保留了dfp突变,遗传不稳定,并且天门冬氨酸 - 1 - 脱羧酶水平升高,这表明它获得了panD的重复。目前尚不清楚突变的dfp产物影响泛酸盐或DNA代谢的哪些步骤,也不清楚其黄素部分可能如何参与其中。

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