Lee D, Lee J, Uhm S J, Lee Y S, Park M J, Park H Y, Kwon M, Lee H T, Kim Y B
Department of Animal Biotechnology, College of Animal Bioscience & Technology, Konkuk University, Seoul, Korea.
Transplant Proc. 2006 Nov;38(9):3066-9. doi: 10.1016/j.transproceed.2006.08.144.
Xenotransplantation of porcine organs has the potential to overcome the current critical shortage of allogenic organs for transplantation in humans. However, the existence of porcine endogenous retroviruses (PERVs) presents a problem for the clinical use of xenografts from pigs. In an attempt to understand the molecular characteristics of PERVs, we cloned the PERV env gene from six pig breeds (ie, Berkshire, Duroc, Landrace, Yorkshire, and two types of miniature pigs) in Korea. A total of 141 env clones were isolated and their sequences were analyzed. Phylogenetic analyses of these genes revealed the presence of PERVs, from both classes A and B, in 54% and 46% of the env clones, respectively. Among these clones, 37 isolates had the correct open reading frame (ORF; 27 clones in subclass A and 10 clones in subclass B), while the others had premature termination. These PERV nucleotide sequences can be used in a database for comparisons of PERV distribution among different pig breeds and for monitoring PERV infection using isolates with functional ORFs. Recombinant envelope of subclass A and B with functional ORF was expressed by vaccinia virus systems. Additionally isolated env clones can be used for various experiments, such as PERV control and infectivity tests, and may enhance the understanding of molecular mechanisms through pseudotyped PERV viruses.
猪器官的异种移植有可能克服目前人类同种异体移植器官严重短缺的问题。然而,猪内源性逆转录病毒(PERV)的存在给猪异种移植物的临床应用带来了问题。为了了解PERV的分子特征,我们从韩国的六个猪品种(即伯克夏猪、杜洛克猪、长白猪、约克夏猪和两种小型猪)中克隆了PERV env基因。共分离出141个env克隆并分析了它们的序列。对这些基因的系统发育分析表明,在env克隆中,分别有54%和46%存在A类和B类PERV。在这些克隆中,37个分离株具有正确的开放阅读框(ORF;A亚类中有27个克隆,B亚类中有10个克隆),而其他的则有提前终止。这些PERV核苷酸序列可用于数据库,以比较不同猪品种中PERV的分布,并使用具有功能性ORF的分离株监测PERV感染。具有功能性ORF的A亚类和B亚类重组包膜由痘苗病毒系统表达。此外,分离出的env克隆可用于各种实验,如PERV控制和感染性测试,并可能通过假型PERV病毒增强对分子机制的理解。