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大肠杆菌K-12 hemD基因的分子克隆与测序及尿嘧啶操纵子的初步数据

Molecular cloning and sequencing of the hemD gene of Escherichia coli K-12 and preliminary data on the Uro operon.

作者信息

Sasarman A, Nepveu A, Echelard Y, Dymetryszyn J, Drolet M, Goyer C

出版信息

J Bacteriol. 1987 Sep;169(9):4257-62. doi: 10.1128/jb.169.9.4257-4262.1987.

Abstract

DNA of plasmid pSAS1002TH (F' ilv+ hemD+ hemC+ cya+) was used to clone the hemD gene of Escherichia coli K-12. Due to poor transformability of the heme-deficient mutants, the restriction fragments of the F' plasmid were first cloned into a mobilizable derivative of pBR322, pSAS1211LP, which was then mobilized into a hemD recA mutant (E. coli SASX419AN). One recombinant plasmid, carrying a HindIII fragment of about 5 kilobases (kb), was shown to complement the hemD mutant and also a cya mutant of E. coli K-12, as well as a hemC mutant of Salmonella typhimurium LT2. Further subcloning of the insert enabled us to locate the hemD gene to a BamHI-PstI fragment (approximately 2.3 kb) which also carried the hemC gene. The hemD gene occupies a region close to the PstI end, since the deletion of a 0.6-kb fragment from this end resulted in loss of the ability to complement the hemD mutation. The use of the promoter-probe vector pK01 and the results of complementation showed that the hemD gene was transcribed under physiological conditions from the same promoter as the hemC gene, the direction of transcription being hemC-hemD. This allows us to define a new polycistronic operon of E. coli K-12, for which we propose the designation Uro operon. Sequencing of the hemD gene showed the presence of an open reading frame (ORF) of 738 nucleotides which could code for a protein with a molecular weight of 27,766, which should correspond to the hemD protein; the ORF starts with the last nucleotide of the hemC gene, the two genes having different reading frames. An ORF of at least 480 base pairs follows the hemD gene after a few nucleotides. The corresponding gene X, the function of which is unknown, might represent a third member of the Uro operon.

摘要

利用质粒pSAS1002TH(F' ilv+ hemD+ hemC+ cya+)的DNA克隆大肠杆菌K-12的hemD基因。由于血红素缺陷型突变体的转化能力较差,F'质粒的限制性片段首先被克隆到pBR322的一个可移动衍生物pSAS1211LP中,然后将其转移到一个hemD recA突变体(大肠杆菌SASX419AN)中。一个携带约5千碱基(kb)的HindIII片段的重组质粒被证明能够互补hemD突变体以及大肠杆菌K-12的cya突变体,还有鼠伤寒沙门氏菌LT2的hemC突变体。对插入片段的进一步亚克隆使我们能够将hemD基因定位到一个BamHI - PstI片段(约2.3 kb),该片段也携带hemC基因。hemD基因位于靠近PstI末端的区域,因为从该末端缺失一个0.6 kb的片段会导致互补hemD突变的能力丧失。使用启动子探针载体pK01以及互补结果表明,hemD基因在生理条件下与hemC基因从同一个启动子转录,转录方向为hemC - hemD。这使我们能够定义大肠杆菌K-12的一个新的多顺反子操纵子,我们提议将其命名为尿嘧啶操纵子。hemD基因的测序显示存在一个738个核苷酸的开放阅读框(ORF),它可以编码一个分子量为27,766的蛋白质,这应该对应于hemD蛋白;该ORF从hemC基因的最后一个核苷酸开始,这两个基因具有不同的阅读框。在hemD基因之后几个核苷酸处有一个至少480个碱基对的ORF。相应的基因X,其功能未知,可能代表尿嘧啶操纵子的第三个成员。

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