Tao Y, Chen K Y
Department of Chemistry, Rutgers University, Piscataway, NJ 08855-0939.
Biochem J. 1994 Sep 1;302 ( Pt 2)(Pt 2):517-25. doi: 10.1042/bj3020517.
Eukaryotic initiation factor 5A (eIF-5A) is the only cellular protein known to contain a hypusine residue that is formed by transferring the aminobutyl moiety from spermidine to a specific lysine residue, followed by hydroxylation at the aminobutyl group. A simple PCR-based strategy was developed to obtain a full-length cDNA of Neurospora crassa eIF-5A. The strategy consists of (i) the design of a pair of key primers (21-mer) based on the highly conserved eIF-5A cDNA domains known in other species, (ii) PCR amplification of Neurospora cDNA using the two key primers to obtain the core sequence for the design of core primers, and (iii) combined use of the key primers, core primers and the universal primers, T3 and T7, to amplify the target sequence in a Neurospora cDNA library. The longest cDNA obtained was cloned into pBlueScript phagemid, and sequence analysis indicated that it encodes a polypeptide of 163 amino acid residues with a codon usage preference characteristic of abundant Neurospora genes. The Neurospora polypeptide showed 59% and 67% identity with human and yeast eIF-5A precursor protein respectively. We subcloned the Neurospora eIF-5A cDNA into pQE-30, which introduces six adjacent histidine residues to the N-terminus of the recombinant protein. The resulting plasmid, pQTy21, was overexpressed in Escherichia coli, and the soluble polyhistidine-tagged protein was purified by metal chelation chromatography. We obtained about 60 mg of purified eIF-5A precursor from 1 litre of culture in a single step using a Ni(II)-nitrilotriacetic acid (NTA)-agarose column. The histidine-tagged eIF-5A precursor protein could be recognized by anti-Neurospora crassa 21 kDa protein serum raised against wild-type eIF-5A precursor and could serve as the substrate protein for deoxyhypusine synthase. Using the histidine-tagged recombinant protein and the Ni(II)-NTA-agarose column, we constructed a protein affinity column and demonstrated an affinity binding between eIF-5A precursor and deoxyhypusine synthase in the presence of NAD+. One-step eIF-5A precursor affinity-column chromatography could lead to a 30-fold purification of deoxyhypusine synthase.
真核生物起始因子5A(eIF - 5A)是已知唯一含有hypusine残基的细胞蛋白,该残基是通过将亚精胺的氨丁基部分转移到特定赖氨酸残基上,然后在氨丁基上进行羟基化而形成的。开发了一种基于简单PCR的策略来获得粗糙脉孢菌eIF - 5A的全长cDNA。该策略包括:(i)基于其他物种中已知的高度保守的eIF - 5A cDNA结构域设计一对关键引物(21个核苷酸);(ii)使用这两个关键引物对粗糙脉孢菌cDNA进行PCR扩增,以获得用于设计核心引物的核心序列;(iii)联合使用关键引物、核心引物以及通用引物T3和T7,在粗糙脉孢菌cDNA文库中扩增目标序列。获得的最长cDNA被克隆到pBlueScript噬菌粒中,序列分析表明它编码一个163个氨基酸残基的多肽,具有丰富的粗糙脉孢菌基因的密码子使用偏好特征。粗糙脉孢菌多肽与人及酵母eIF - 5A前体蛋白的同一性分别为59%和67%。我们将粗糙脉孢菌eIF - 5A cDNA亚克隆到pQE - 30中,该载体在重组蛋白的N端引入了六个相邻的组氨酸残基。所得质粒pQTy21在大肠杆菌中过量表达,可溶性的带有多组氨酸标签的蛋白通过金属螯合层析进行纯化。使用Ni(II) - 次氮基三乙酸(NTA) - 琼脂糖柱,我们从1升培养物中一步获得了约60 mg纯化的eIF - 5A前体。带有组氨酸标签的eIF - 5A前体蛋白能够被针对野生型eIF - 5A前体产生的抗粗糙脉孢菌21 kDa蛋白血清所识别,并且可以作为脱氧hypusine合酶的底物蛋白。使用带有组氨酸标签的重组蛋白和Ni(II) - NTA - 琼脂糖柱,我们构建了一个蛋白亲和柱,并证明在NAD + 存在下eIF - 5A前体与脱氧hypusine合酶之间存在亲和结合。一步法eIF - 5A前体亲和柱层析可以使脱氧hypusine合酶纯化30倍。