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编码胍丁胺水解酶(大肠杆菌中腐胺生物合成酶)的speB基因的分析与测序

Analysis and sequence of the speB gene encoding agmatine ureohydrolase, a putrescine biosynthetic enzyme in Escherichia coli.

作者信息

Szumanski M B, Boyle S M

机构信息

Department of Biochemistry and Nutrition, College of Agriculture and Life Sciences, Blacksburg, Virginia.

出版信息

J Bacteriol. 1990 Feb;172(2):538-47. doi: 10.1128/jb.172.2.538-547.1990.

Abstract

The speB gene of Escherichia coli encodes the enzyme agmatine ureohydrolase (AUH). AUH catalyzes the hydrolysis of agmatine to urea and putrescine in one of the two polyamine biosynthetic pathways in E. coli. Sequencing of a 2.97-kilobase-pair fragment of the E. coli chromosome containing speB revealed the presence of three intact open reading frames (ORFs), ORF1 and ORF2 on one strand and ORF3 on the opposite strand, as well as a truncated ORF, ORF4, which terminated 92 kilobase pairs upstream from ORF3. ORF3 contained the coding sequence of the speB gene, as confirmed by complementation analysis. Two ORF3 transcripts were detected: a shorter transcript that included only ORF3 and a longer transcript that included both ORF3 and ORF4. The short transcript was abundantly expressed when the ORF4 sequences were deleted, but when ORF4 and its upstream sequences were present, the polycistronic message predominated and the amount of the monocistronic message was drastically reduced. The promoter from which the shorter transcript was produced contained a TATACT sequence at position -12, but sequences upstream from the -12 position seemed to be irrelevant for promoter activity. The predicted amino acid sequence of AUH contained three regions of high homology to the arginases of yeasts, rats, and humans.

摘要

大肠杆菌的speB基因编码胍丁胺脲水解酶(AUH)。在大肠杆菌两条多胺生物合成途径之一中,AUH催化胍丁胺水解生成尿素和腐胺。对大肠杆菌染色体上包含speB的一个2.97千碱基对片段进行测序,结果显示存在三个完整的开放阅读框(ORF),一条链上的ORF1和ORF2以及另一条链上的ORF3,还有一个截短的ORF,即ORF4,它在ORF3上游92千碱基对处终止。互补分析证实,ORF3包含speB基因的编码序列。检测到两种ORF3转录本:一种较短的转录本仅包含ORF3,另一种较长的转录本包含ORF3和ORF4。当缺失ORF4序列时,短转录本大量表达,但当存在ORF4及其上游序列时,多顺反子信息占主导,单顺反子信息的量急剧减少。产生较短转录本的启动子在-12位含有TATACT序列,但-12位上游的序列似乎与启动子活性无关。预测的AUH氨基酸序列包含与酵母、大鼠和人类精氨酸酶高度同源的三个区域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc0d/208475/25a0d01f8bac/jbacter01044-0040-a.jpg

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