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来自灰色链霉菌的组氨酸解氨酶。

Histidine ammonia-lyase from Streptomyces griseus.

作者信息

Wu P C, Kroening T A, White P J, Kendrick K E

机构信息

Department of Microbiology, Ohio State University, Columbus 43210.

出版信息

Gene. 1992 Jun 15;115(1-2):19-25. doi: 10.1016/0378-1119(92)90535-w.

Abstract

Histidine ammonia-lyase (histidase; HutH) has been purified to homogeneity from Streptomyces griseus and the N-terminal amino acid (aa) sequence used to clone the histidase-encoding structural gene, hutH. The purified enzyme shows typical saturation kinetics and is inhibited competitively by D-histidine and histidinol phosphate. High concentrations of K.cyanide inactivate HutH unless the enzyme is protected by the substrate or histidinol phosphate. On the basis of the nucleotide sequence, the hutH structural gene would encode a protein of 53 kDa with an N terminus identical to that determined for the purified enzyme. Immediately upstream from hutH is a region that strongly resembles a class of Streptomyces promoters active during vegetative growth; however, there is no obvious ribosome-binding site adjacent to the hutH translation start codon. The deduced aa sequence of an upstream partial open reading frame shows no similarity with other proteins, including HutP of Bacillus subtilis and HutU of Pseudomonas putida. Promoter-probe analysis indicates that promoter activity maps within the DNA surrounding the hutH start codon. Pairwise comparisons of the primary structures of bacterial and mammalian histidases, together with the unique kinetic properties and gene organization, suggest that streptomycete histidase may represent a distinct family of histidases.

摘要

已从灰色链霉菌中纯化出组氨酸解氨酶(组氨酸酶;HutH)至同质,并利用其N端氨基酸序列克隆了编码组氨酸酶的结构基因hutH。纯化后的酶表现出典型的饱和动力学,受到D-组氨酸和磷酸组氨醇的竞争性抑制。高浓度的氰化钾会使HutH失活,除非该酶受到底物或磷酸组氨醇的保护。根据核苷酸序列,hutH结构基因编码一种53 kDa的蛋白质,其N端与纯化酶的N端相同。在hutH的紧邻上游有一个区域,与一类在营养生长期间活跃的链霉菌启动子极为相似;然而,在hutH翻译起始密码子附近没有明显的核糖体结合位点。上游部分开放阅读框推导的氨基酸序列与其他蛋白质没有相似性,包括枯草芽孢杆菌的HutP和恶臭假单胞菌的HutU。启动子探针分析表明,启动子活性定位在hutH起始密码子周围的DNA区域内。细菌和哺乳动物组氨酸酶一级结构的成对比较,以及独特的动力学特性和基因组织,表明链霉菌组氨酸酶可能代表一个独特的组氨酸酶家族。

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