首页> 美国卫生研究院文献>Journal of Bacteriology >Alcohol dehydrogenase gene from Alcaligenes eutrophus: subcloning heterologous expression in Escherichia coli sequencing and location of Tn5 insertions.
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Alcohol dehydrogenase gene from Alcaligenes eutrophus: subcloning heterologous expression in Escherichia coli sequencing and location of Tn5 insertions.

机译:嗜碱产碱杆菌的酒精脱氢酶基因:亚克隆在大肠杆菌中的异源表达测序和Tn5插入的位置。

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摘要

The nucleotide sequence of the gene that encodes the fermentative, multifunctional alcohol dehydrogenase (ADH) in Alcaligenes eutrophus, and of adjacent regions on a 1.8-kilobase-pair PstI fragment was determined. From the deduced amino acid sequence, a molecular weight of 38,549 was calculated for the ADH subunit. The amino acid sequence reveals homologies from 22.3 to 26.3% with zinc-containing alcohol dehydrogenases from eucaryotic organisms (Schizosaccharomyces pombe, Zea mays, mouse, horse liver, and human liver). Most of the 22 amino acid residues, which are strictly conserved in this group of ADHs (H. Jörnvall, B. Persson, and J. Jeffery, Eur. J. Biochem. 167:195-201, 1987), either were present in the A. eutrophus enzyme or had been substituted by related amino acids. The A. eutrophus adh gene was transcribed in Escherichia coli only under the control of the lac promoter, but was not expressed by its own promoter. A sequence resembling the E. coli consensus promoter DNA sequence did not contain the invariant T, but a G, in the potential -10 region. In the transposon-induced mutants HC1409 and HC1421, which form ADH constitutively, the insertions of Tn5::mob were localized 56 and 66 base pairs, respectively, upstream of the presumptive translation initiation codon. In contrast to the promoter, the A. eutrophus ribosome-binding site with a GGAG Shine-Dalgarno sequence 6 base pairs upstream of the translation initiation codon was accepted by the E. coli translation apparatus. A stable hairpin structure, which may provide a transcription termination signal, is predicted to occur in the mRNA, with its starting point 21 base pairs downstream from the translation termination codon.
机译:确定了编码嗜酸拟南芥中的发酵性多功能醇脱氢酶(ADH)的基因以及1.8碱基对PstI片段上相邻区域的核苷酸序列。根据推导的氨基酸序列,计算出ADH亚基的分子量为38,549。该氨基酸序列与真核生物(粟酒裂殖酵母,玉米,小鼠,马肝和人肝)的含锌醇脱氢酶的同源性为22.3%至26.3%。在这组ADH中严格保守的22个氨基酸残基中的大多数(H.Jörnvall,B.Persson和J.Jeffery,Eur.J.Biochem.167:195-201,1987)都存在于或被相关氨基酸取代。 eutrophus adh基因仅在lac启动子的控制下在大肠杆菌中转录,但不由其自身的启动子表达。类似于大肠杆菌共有启动子DNA序列的序列在潜在的-10区不包含不变的T,而是一个G。在转座子诱导的突变体HC1409和HC1421组成性地形成ADH,Tn5 :: mob的插入分别位于假定的翻译起始密码子上游56和66个碱基对。与启动子相反,大肠杆菌翻译装置接受具有在翻译起始密码子上游的GGAG Shine-Dalgarno序列6个碱基对的真核农杆菌核糖体结合位点。预计可能提供转录终止信号的稳定发夹结构会在mRNA中发生,其起始点位于翻译终止密码子下游的21个碱基对。

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