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拟南芥生物素合成酶的cDNA及编码基因的特征分析。

Characterization of the cDNA and gene coding for the biotin synthase of Arabidopsis thaliana.

作者信息

Weaver L M, Yu F, Wurtele E S, Nikolau B J

机构信息

Department of Biochemistry and Biophysics, Iowa State University, Ames 50011, USA.

出版信息

Plant Physiol. 1996 Mar;110(3):1021-8. doi: 10.1104/pp.110.3.1021.

Abstract

Biotin, an essential cofactor, is synthesized de novo only by plants and some microbes. An Arabidopsis thaliana expressed sequence tag that shows sequence similarity to the carboxyl end of biotin synthase from Escherichia coli was used to isolate a near-full-length cDNA. This cDNA was shown to code for the Arabidopsis biotin synthase by its ability to complement a bioB mutant of E. coli. Site-specific mutagenesis indicates that residue threonine-173, which is highly conserved in biotin synthases, is important for catalytic competence of the enzyme. The primary sequence of the Arabidopsis biotin synthase is most similar to biotin synthases from E. coli, Serratia marcescens, and Saccharomyces cerevisiae (about 50% sequence identity) and more distantly related to the Bacillus sphaericus enzyme (33% sequence identity). The primary sequence of the amino terminus of the Arabidopsis biotin synthase may represent an organelle-targeting transit peptide. The single Arabidopsis gene coding for biotin synthase, BIO2, was isolated and sequenced. The biotin synthase coding sequence is interrupted by five introns. The gene sequence upstream of the translation start site has several unusual features, including imperfect palindromes and polypyrimidine sequences, which may function in the transcriptional regulation of the BIO2 gene.

摘要

生物素作为一种必需的辅因子,仅由植物和一些微生物从头合成。利用一个与大肠杆菌生物素合酶羧基末端具有序列相似性的拟南芥表达序列标签,分离出了一个接近全长的cDNA。该cDNA通过其互补大肠杆菌bioB突变体的能力,被证明编码拟南芥生物素合酶。位点特异性诱变表明,在生物素合酶中高度保守的苏氨酸-173残基对该酶的催化活性很重要。拟南芥生物素合酶的一级序列与大肠杆菌、粘质沙雷氏菌和酿酒酵母的生物素合酶最为相似(序列同一性约为50%),与球形芽孢杆菌的酶的亲缘关系较远(序列同一性为33%)。拟南芥生物素合酶氨基末端的一级序列可能代表一个靶向细胞器的转运肽。分离并测序了拟南芥中编码生物素合酶的单个基因BIO2。生物素合酶编码序列被5个内含子打断。翻译起始位点上游的基因序列有几个不寻常的特征,包括不完全回文序列和多嘧啶序列,它们可能在BIO2基因的转录调控中发挥作用。

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