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在疟原虫乳酸脱氢酶氨基端的 Shine-Dalgarno 样序列中的单个突变影响在原核系统中表达的真核蛋白的产生。

Single mutation in Shine-Dalgarno-like sequence present in the amino terminal of lactate dehydrogenase of Plasmodium effects the production of an eukaryotic protein expressed in a prokaryotic system.

机构信息

Department of Biotechnology, Middle East Technical University, Ankara, Turkey.

出版信息

Mol Biotechnol. 2013 Jun;54(2):602-8. doi: 10.1007/s12033-012-9602-z.

Abstract

One of the most important step in structure-based drug design studies is obtaining the protein in active form after cloning the target gene. In one of our previous study, it was determined that an internal Shine-Dalgarno-like sequence present just before the third methionine at N-terminus of wild type lactate dehydrogenase enzyme of Plasmodium falciparum prevent the translation of full length protein. Inspection of the same region in P. vivax LDH, which was overproduced as an active enzyme, indicated that the codon preference in the same region was slightly different than the codon preference of wild type PfLDH. In this study, 5'-GGAGGC-3' sequence of P. vivax that codes for two glycine residues just before the third methionine was exchanged to 5'-GGAGGA-3', by mimicking P. falciparum LDH, to prove the possible effects of having an internal SD-like sequence when expressing an eukaryotic protein in a prokaryotic system. Exchange was made by site-directed mutagenesis. Results indicated that having two glycine residues with an internal SD-like sequence (GGAGGA) just before the third methionine abolishes the enzyme activity due to the preference of the prokaryotic system used for the expression. This study emphasizes the awareness of use of a prokaryotic system to overproduce an eukaryotic protein.

摘要

在基于结构的药物设计研究中,最重要的步骤之一是在克隆靶基因后获得具有活性的蛋白质。在我们之前的一项研究中,确定了疟原虫乳酸脱氢酶野生型 N 端第三个甲硫氨酸之前存在的内部 Shine-Dalgarno 样序列,阻止了全长蛋白的翻译。对同样在原核系统中作为活性酶大量表达的间日疟原虫 LDH 的同一区域进行检查,表明该区域的密码子偏好与野生型 PfLDH 的密码子偏好略有不同。在这项研究中,通过模拟疟原虫 LDH,将编码第三个甲硫氨酸前两个甘氨酸的 5'-GGAGGC-3' 序列替换为 5'-GGAGGA-3',以证明在原核系统中表达真核蛋白时具有内部 SD 样序列的可能影响。通过定点突变进行交换。结果表明,由于用于表达的原核系统的偏好,在第三个甲硫氨酸之前具有两个甘氨酸残基的内部 SD 样序列 (GGAGGA) 会使酶失活。这项研究强调了在原核系统中大量生产真核蛋白时需要注意这一点。

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