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紫茉莉抗病毒蛋白(MAP)的DNA序列,一种具有抗病毒特性的核糖体失活蛋白,来自紫茉莉及其在大肠杆菌中的表达。

DNA sequence of Mirabilis antiviral protein (MAP), a ribosome-inactivating protein with an antiviral property, from mirabilis jalapa L. and its expression in Escherichia coli.

作者信息

Kataoka J, Habuka N, Furuno M, Miyano M, Takanami Y, Koiwai A

机构信息

Life Science Research Laboratory, Japan Tobacco Inc., Kanagawa.

出版信息

J Biol Chem. 1991 May 5;266(13):8426-30.

PMID:2022657
Abstract

We cloned a cDNA for Mirabilis antiviral protein (MAP), a ribosome-inactivating protein (RIP), which inhibits the mechanical transmission of plant virus and the in vitro protein synthesis of both prokaryotes and eukaryotes. The cDNA consisted of 1066 nucleotides and could encode 278 amino acids. The major part of the amino acid sequence (from Ala29 to Ser278) was identical with the sequence of native MAP as determined by protein sequencing. An NH2-terminal extrapeptide (28 amino acid residues) of MAP was comparable with the signal peptides of plant proteins accumulating in the vacuole. A stable hairpin structure was predicted in the 3'-noncoding region of the cDNA. Tandem repeated sequences were found downstream from the hairpin structure. They were composed of triple complete repeats of a heptanucleotide with preceding and following hexa-nucleotide repeats. The cDNA was expressed in Escherichia coli based on the T7 expression system. The product encoded by the cDNA was confirmed to be MAP precursor by Western blotting followed by immunological analysis. The growth of the transformants was inhibited by the expression of the gene. MAP precursor also seemed to inhibit the protein synthesis of E. coli just as native MAP has been observed to do.

摘要

我们克隆了编码紫茉莉抗病毒蛋白(MAP)的cDNA,MAP是一种核糖体失活蛋白(RIP),它能抑制植物病毒的机械传播以及原核生物和真核生物的体外蛋白质合成。该cDNA由1066个核苷酸组成,可编码278个氨基酸。通过蛋白质测序确定,氨基酸序列的主要部分(从Ala29到Ser278)与天然MAP的序列相同。MAP的一个NH2末端额外肽段(28个氨基酸残基)与液泡中积累的植物蛋白的信号肽相当。在cDNA的3'非编码区预测到一个稳定的发夹结构。在发夹结构下游发现了串联重复序列。它们由一个七核苷酸的三重完全重复以及前后的六核苷酸重复组成。基于T7表达系统,该cDNA在大肠杆菌中表达。通过蛋白质免疫印迹和免疫分析证实,cDNA编码的产物为MAP前体。基因的表达抑制了转化体的生长。MAP前体似乎也像天然MAP一样抑制大肠杆菌的蛋白质合成。

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