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catBCE序列对醋酸钙不动杆菌中pcaE突变表型回复的影响。

Influence of the catBCE sequence on the phenotypic reversion of a pcaE mutation in Acinetobacter calcoaceticus.

作者信息

Doten R C, Gregg L A, Ornston L N

出版信息

J Bacteriol. 1987 Jul;169(7):3175-80. doi: 10.1128/jb.169.7.3175-3180.1987.

Abstract

Isofunctional beta-ketoadipate:succinyl coenzyme A transferases I and II are encoded by the pcaE and catE genes, respectively, of Acinetobacter calcoaceticus. The genes are under separate transcriptional control and genetically unlinked. Mutations in the pcaE gene result in a p-hydroxybenzoate-negative (POB-) phenotype, whereas catE mutations cause a benzoate-negative (Ben-) phenotype. A. calcoaceticus ADP125 carries the pcaE3125 mutation and gave rise to POB+ revertants with a frequency of 10(-4). A 5.0-kilobase-pair (kb) EcoRI restriction fragment containing the catBCDE genes possesses two SalI restriction sites separated by 1.5 kb. Removal of the DNA between the SalI sites created a deletion removing the terminal 35 base pairs of the catB gene, the 300-base-pair catC gene, and about 1.1 kb of the 1.2-kb catE gene. Transformation of strain ADP125 with the modified EcoRI fragment lacking the SalI segment produced natural transformants containing this designed deletion with a frequency of 20%. The frequency of POB+ phenotypic reversion of the pcaE3125 mutation in these transformants was more than 300-fold lower than the frequency of phenotypic reversion observed in genetic backgrounds containing the catBCE segment. Alleles created by pcaE phenotypic reversion in a wild-type cat genetic background were unlinked to the cat gene cluster, and revertant transferases were expressed inducibly with the pca genes. Alterations in the restriction pattern of the pca gene cluster in several revertants were observed, indicating that multiple sequence changes have occurred in the pca genes during reversion. Growth of the phenotypic revertants under nonselective conditions resulted in loss of either the POB+ phenotype or both the POB+ and Ben+ phenotypes at high frequency. Southern hybridizations revealed that loss of the POB+ of Ben+ phenotype was due to deletion of the entire pca or cat gene cluster, a loss of at least 16 kb in some strains. Revertants isolated in a catBCE deletion background were stable. These results suggest that enhanced phenotypic reversion of pcaE3125 in wild-type cat background is due to repair of the mutation by recombination between the catBCE and pcaE3125 sequences. Genetic instability of the phenotypic revertants may be attributed to deletion of pca and cat sequences by recombination between regions of homology created as a consequence of pcaE repair.

摘要

同功β-酮己二酸:琥珀酰辅酶A转移酶I和II分别由乙酸钙不动杆菌的pcaE和catE基因编码。这些基因受独立的转录控制且在遗传上不连锁。pcaE基因中的突变导致对羟基苯甲酸阴性(POB-)表型,而catE突变导致苯甲酸阴性(Ben-)表型。乙酸钙不动杆菌ADP125携带pcaE3125突变,并以10^(-4)的频率产生POB+回复突变体。一个包含catBCDE基因的5.0千碱基对(kb)的EcoRI限制性片段有两个相距1.5 kb的SalI限制性位点。去除SalI位点之间的DNA产生了一个缺失,该缺失去除了catB基因的末端35个碱基对、300个碱基对的catC基因以及1.2 kb的catE基因中的约1.1 kb。用缺乏SalI片段的修饰EcoRI片段转化菌株ADP125,产生含有这种设计缺失的天然转化体的频率为20%。这些转化体中pcaE3125突变的POB+表型回复频率比在含有catBCE片段的遗传背景中观察到的表型回复频率低300多倍。在野生型cat遗传背景中由pcaE表型回复产生的等位基因与cat基因簇不连锁,并且回复转移酶与pca基因一起被诱导表达。在几个回复突变体中观察到pca基因簇限制性图谱的改变,表明在回复过程中pca基因发生了多个序列变化。表型回复突变体在非选择性条件下生长导致高频丧失POB+表型或同时丧失POB+和Ben+表型。Southern杂交显示POB+或Ben+表型的丧失是由于整个pca或cat基因簇的缺失,在一些菌株中至少缺失16 kb。在catBCE缺失背景中分离的回复突变体是稳定的。这些结果表明,在野生型cat背景中pcaE3125表型回复增强是由于catBCE和pcaE3125序列之间的重组修复了突变。表型回复突变体的遗传不稳定性可能归因于由于pcaE修复而产生的同源区域之间的重组导致pca和cat序列的缺失。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10d2/212367/84989e48c907/jbacter00197-0277-a.jpg

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