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森林烟草二氢二吡啶甲酸合酶中的一个二核苷酸突变导致赖氨酸过量产生。

A dinucleotide mutation in dihydrodipicolinate synthase of Nicotiana sylvestris leads to lysine overproduction.

作者信息

Ghislain M, Frankard V, Jacobs M

机构信息

Laboratory of Plant Genetics, Vrije Universiteit Brussel, Belgium.

出版信息

Plant J. 1995 Nov;8(5):733-43. doi: 10.1046/j.1365-313x.1995.08050733.x.

Abstract

By applying a mutagenesis/selection procedure to obtain resistance to a lysine analog, S-(2-aminoethyl)L-cysteine (AEC), a lysine overproducing mutant in Nicotiana sylvestris was isolated. Amino acid analyses performed throughout plant development and of different organs of the N. sylvestris RAEC-1 mutant, revealed a developmental-dependent accumulation of free lysine. Lysine biosynthesis in the RAEC-1 mutant was enhanced due to a lysine feedback-desensitized dihydrodipicolinate synthase (DHDPS). Several molecular approaches were undertaken to identify the nucleotide change in the dhdps-r1 gene, the mutated gene coding for the lysine-desensitized enzyme. The enzyme was purified from wild-type plants for amino end microsequencing and 10 amino acids were identified. Using dicotyledon dhdps probes, a genomic fragment was cloned from an enriched library of DNA from the homozygote RAEC-1 mutant plant. A dhdps cDNA, putatively full-length, was isolated from a tobacco cDNA library. Nucleotide sequence analyses confirmed the presence of the previously identified amino end preceded by a chloroplast transit peptide sequence. Nucleotide sequence comparisons, enzymatic and immunological analyses revealed that the tobacco cDNA corresponds to a normal type of DHDPS, lysine feedback-regulated, and the genomic fragment to the mutated DHDPS, insensitive to lysine inhibition. Functional complementation of a DHDPS-deficient Escherichia coli strain was used as an expression system. Reconstruction between the cDNA and genomic fragment led to the production of a cDNA producing an insensitive form of DHDPS. Amino acid sequence comparisons pointed out, at position 104 from the first amino acid of the mature protein, the substitution of Asn to Ileu which corresponds to a dinucleotide mutation. This change is unique to the dhdps-r1 gene when compared with the wild-type sequence. The identification of the nucleotide and amino acid change of the lysine-desensitized DHDPS from RAEC-1 plant opens new perspectives for the improvement of the nutritional value of crops and possibly to develop a new plant selectable marker.

摘要

通过应用诱变/筛选程序以获得对赖氨酸类似物S-(2-氨基乙基)-L-半胱氨酸(AEC)的抗性,从野生烟草中分离出了一个赖氨酸高产突变体。对野生烟草RAEC-1突变体整个植株发育过程以及不同器官进行的氨基酸分析表明,游离赖氨酸的积累具有发育依赖性。由于赖氨酸反馈脱敏的二氢吡啶二羧酸合酶(DHDPS),RAEC-1突变体中的赖氨酸生物合成得到增强。采用了多种分子方法来鉴定dhdps-r1基因中的核苷酸变化,该突变基因编码对赖氨酸脱敏的酶。从野生型植物中纯化该酶用于氨基末端微测序,并鉴定出了10个氨基酸。使用双子叶植物dhdps探针,从纯合RAEC-1突变体植物的富集DNA文库中克隆出一个基因组片段。从烟草cDNA文库中分离出一个推测为全长的dhdps cDNA。核苷酸序列分析证实了先前鉴定的氨基末端之前存在叶绿体转运肽序列。核苷酸序列比较、酶学和免疫学分析表明,烟草cDNA对应于正常类型的DHDPS,受赖氨酸反馈调节,而基因组片段对应于对赖氨酸抑制不敏感的突变DHDPS。将DHDPS缺陷的大肠杆菌菌株的功能互补用作表达系统。cDNA与基因组片段之间的重组导致产生了一种产生不敏感形式DHDPS的cDNA。氨基酸序列比较指出,在成熟蛋白第一个氨基酸的第104位,天冬酰胺被异亮氨酸取代,这对应于一个二核苷酸突变。与野生型序列相比,这种变化是dhdps-r1基因所特有的。鉴定来自RAEC-1植物的赖氨酸脱敏DHDPS的核苷酸和氨基酸变化,为提高作物营养价值以及可能开发新的植物选择标记开辟了新的前景。

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