Chu T H, Martinez I, Olson P, Dornburg R
University of Medicine, Dentistry of New Jersey, Piscataway, USA.
Biotechniques. 1995 May;18(5):890-6, 898-9.
Recently, we constructed a series of highly efficient universal eukaryotic gene expression vectors (Sheay et al., BioTechniques 15:856-862, 1993). Such vectors contain a viral promoter and enhancer followed by the adenovirus tripartite leader sequence, a multiple cloning site for the insertion of the gene of interest and a polyadenylation sequence. To enable expression of peptides to be secreted into the tissue culture medium or to be incorporated into the cell membrane, several modifications have been introduced into such vectors: stop codons in all three reading frames were inserted at the end of the multiple cloning site and a DNA sequence coding for a signal peptide for transport through the endoplasmatic reticulum (ER) was introduced downstream of the adenovirus tripartite leader sequence followed by two unique restriction enzyme recognition sites. A protocol is described that allows fast and easy cloning of peptide-coding regions, i.e., PCR products, for expression and secretion. The transport of a genetically engineered chimeric transmembrane protein connected to this ER leader sequence was as efficient as that of the original protein from which the ER sequence has been derived. These universal vectors can also be used for the easy construction of any chimeric transmembrane or secretion proteins.
最近,我们构建了一系列高效的通用真核基因表达载体(Sheay等人,《生物技术》15:856 - 862,1993)。此类载体包含一个病毒启动子和增强子,随后是腺病毒三联前导序列、用于插入目的基因的多克隆位点以及一个聚腺苷酸化序列。为了使肽能够分泌到组织培养基中或整合到细胞膜中,已对此类载体进行了多项修饰:在多克隆位点末端插入了所有三个阅读框中的终止密码子,并且在腺病毒三联前导序列下游引入了一个编码用于通过内质网(ER)转运的信号肽的DNA序列,随后是两个独特的限制性内切酶识别位点。本文描述了一种方案,该方案允许快速简便地克隆肽编码区,即PCR产物,用于表达和分泌。连接到该内质网前导序列的基因工程嵌合跨膜蛋白的转运效率与从中衍生出内质网序列的原始蛋白的转运效率相同。这些通用载体还可用于轻松构建任何嵌合跨膜或分泌蛋白。