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枯草芽孢杆菌中细胞色素aa3生物合成和芽孢形成所需基因ctaA的分离与测序

Isolation and sequence of ctaA, a gene required for cytochrome aa3 biosynthesis and sporulation in Bacillus subtilis.

作者信息

Mueller J P, Taber H W

机构信息

Department of Microbiology and Immunology, Albany Medical College, New York 12208.

出版信息

J Bacteriol. 1989 Sep;171(9):4967-78. doi: 10.1128/jb.171.9.4967-4978.1989.

Abstract

Cytochrome aa3 is one of two terminal oxidase complexes in the Bacillus subtilis electron transport chain. A novel genetic strategy was devised which permitted the isolation of B. subtilis mutants lacking cytochrome aa3 by selection for streptomycin-resistant clones which failed to oxidize the artificial electron donor N,N,N',N'-tetramethyl-p-phenylenediamine. Two mutations were studied intensively. Spectroscopic examination showed that each mutant lacked cytochrome aa3; they were also asporogenous and unable to grow on lactate as the sole carbon and energy source. These mutations were mapped to a locus designated ctaA, located at 127 degrees between pyrD and metC on the B. subtilis chromosome. Both ctaA mutations were closely linked by transformation to the pycA locus. The ctaA locus and a portion of the pycA locus were cloned from a B. subtilis integration library constructed in Escherichia coli. A recombinant plasmid containing a 4.0-kilobase insert of B. subtilis DNA could transform both ctaA mutants to CtaA+. Gene disruption and complementation experiments with subcloned fragments revealed that the ctaA locus consisted of a single transcriptional unit about 1.35 kilobase pairs in size. The nucleotide sequence of the ctaA transcriptional unit contains a single open reading frame capable of coding for a protein with a predicted molecular weight of 34,065. The predicted protein is extremely hydrophobic, with several probable membrane-spanning domains. No sequence similiarity was found between ctaA and the highly conserved procaryotic and mitochondrial oxidase polypeptides. Cloning and sequence analysis of two ctaA mutations revealed that one allele is a nonsense mutation in the carboxy terminus and the other is a missense mutation in the amino terminus; this indicates that the pleiotropic phenotype conferred by each mutation was caused by loss of CtaA or of its activity. Genetic evidence suggests that the ctaA gene product is required as an accessory protein in the genetic expression, posttranslational biogenesis, or both, of the cytochrome aa3 complex and during an early stage of sporogenesis.

摘要

细胞色素aa3是枯草芽孢杆菌电子传递链中的两个末端氧化酶复合物之一。设计了一种新的遗传策略,通过选择不能氧化人工电子供体N,N,N',N'-四甲基对苯二胺的抗链霉素克隆来分离缺乏细胞色素aa3的枯草芽孢杆菌突变体。对两个突变进行了深入研究。光谱检查表明,每个突变体都缺乏细胞色素aa3;它们也不产芽孢,并且不能以乳酸作为唯一的碳源和能源生长。这些突变被定位到一个名为ctaA的位点,位于枯草芽孢杆菌染色体上pyrD和metC之间127度的位置。两个ctaA突变通过转化与pycA位点紧密连锁。从在大肠杆菌中构建的枯草芽孢杆菌整合文库中克隆了ctaA位点和部分pycA位点。一个含有4.0千碱基枯草芽孢杆菌DNA插入片段的重组质粒可以将两个ctaA突变体转化为CtaA+。用亚克隆片段进行的基因破坏和互补实验表明,ctaA位点由一个大小约为1.35千碱基对的单一转录单位组成。ctaA转录单位的核苷酸序列包含一个单一的开放阅读框,能够编码一种预测分子量为34,065的蛋白质。预测的蛋白质具有极强的疏水性,有几个可能的跨膜结构域。在ctaA与高度保守的原核生物和线粒体氧化酶多肽之间未发现序列相似性。对两个ctaA突变的克隆和序列分析表明,一个等位基因是羧基末端的无义突变,另一个是氨基末端的错义突变;这表明每个突变赋予的多效表型是由CtaA或其活性丧失引起的。遗传证据表明,ctaA基因产物在细胞色素aa3复合物的基因表达、翻译后生物合成或两者过程中以及在孢子形成的早期阶段作为辅助蛋白是必需的。

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