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体外PCR定向形成病毒杂交体。

PCR-directed formation of viral hybrids in vitro.

作者信息

Khan S A, Watson R H, Hayes S J, Serwer P

机构信息

Department of Biochemistry, The University of Texas Health Science Center, San Antonio 78284-7760, USA.

出版信息

Virology. 1997 Jan 20;227(2):409-19. doi: 10.1006/viro.1996.8328.

Abstract

When constructing viruses that have desired hybrid phenotypes, anticipated difficulties include the nonviability of many, possibly most, of the hybrid genomes that can be constructed by incorporation of DNA fragments. Therefore, many different hybrid genomes may have to be constructed in order to find one that is viable. To perform this combinatorial work in a single experiment, we have used bacteriophage T7-infected cell extracts to transfer DNA in vitro. In an extract, we have incubated T7 DNA, together with DNA obtained by polymerase chain reaction (PCR) amplification of the gene (gene 17) for the tail fiber of the T7-related bacteriophage, T3. After in vitro packaging of DNA in the extract, hybrid progeny bacteriophage were detected by probing with a T3-specific oligonucleotide; hybrids are found at a frequency of 0.1%. By determination of the nucleotide sequence of the entire gene 17 of 14 independently isolated hybrids, both right and left ends of the PCR fragment are found to be truncated in all hybrids. For all 14 hybrids, the right end is in the same location; the left end is found at 3 different locations. The nonrandom location of the ends is explained by selection among different inserts for viability; that is, most of the hybrid genomes are nonviable. Some hybrids acquire from T3 the desirable phenotype of nonadherence to agarose gels during agarose gel electrophoresis.

摘要

在构建具有所需杂交表型的病毒时,预期的困难包括通过掺入DNA片段构建的许多(可能是大多数)杂交基因组无法存活。因此,可能需要构建许多不同的杂交基因组才能找到一个可行的。为了在单个实验中进行这项组合工作,我们使用了受噬菌体T7感染的细胞提取物在体外转移DNA。在提取物中,我们将T7 DNA与通过聚合酶链反应(PCR)扩增T7相关噬菌体T3的尾丝基因(基因17)获得的DNA一起孵育。在提取物中对DNA进行体外包装后,通过用T3特异性寡核苷酸进行探测来检测杂交后代噬菌体;杂交体的出现频率为0.1%。通过测定14个独立分离的杂交体的整个基因17的核苷酸序列,发现所有杂交体中PCR片段的右端和左端均被截断。对于所有14个杂交体,右端位于相同位置;左端位于3个不同位置。末端的非随机位置是通过在不同插入片段中选择存活能力来解释的;也就是说,大多数杂交基因组是不可行的。一些杂交体从T3获得了在琼脂糖凝胶电泳期间不粘附于琼脂糖凝胶的理想表型。

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