Xiao-Yan HUANG, Ming-Li LI, Juan XU, Yue-Dong GAO, Wen-Guang WANG, An-Guo YIN, Xiao-Fei LI, Xiao-Mei SUN, Xue-Shan XIA, Jie-Jie DAI. 2013. Analysis of the molecular characteristics and cloning of full-length coding sequence of Interleukin-2 in tree shrews. Zoological Research, 34(2): 121-126. DOI: 10.3724/SP.J.1141.2013.02121
Citation: Xiao-Yan HUANG, Ming-Li LI, Juan XU, Yue-Dong GAO, Wen-Guang WANG, An-Guo YIN, Xiao-Fei LI, Xiao-Mei SUN, Xue-Shan XIA, Jie-Jie DAI. 2013. Analysis of the molecular characteristics and cloning of full-length coding sequence of Interleukin-2 in tree shrews. Zoological Research, 34(2): 121-126. DOI: 10.3724/SP.J.1141.2013.02121

Analysis of the molecular characteristics and cloning of full-length coding sequence of Interleukin-2 in tree shrews

  • While the tree shrew (Tupaia belangeri chinensis) is an excellent animal model for studying the mechanisms of human diseases, but few studies examine interleukin-2 (IL-2), an important immune factor in disease model evaluation. In this study, a 465 bp of the full-length IL-2 cDNA encoding sequence was cloned from the RNA of tree shrew spleen lymphocytes, which were then cultivated and stimulated with ConA (concanavalin). Clustal W 2.0 was used to compare and analyze the sequence and molecular characteristics, and establish the similarity of the overall structure of IL-2 between tree shrews and other mammals. The homology of the IL-2 nucleotide sequence between tree shrews and humans was 93%, and the amino acid homology was 80%. The phylogenetic tree results, derived through the Neighbour-Joining method using MEGA5.0, indicated a close genetic relationship between tree shrews, Homo sapiens, and Macaca mulatta. The three-dimensional structure analysis showed that the surface charges in most regions of tree shrew IL-2 were similar to between tree shrews and humans; however, the N-glycosylation sites and local structures were different, which may affect antibody binding. These results provide a fundamental basis for the future study of IL-2 monoclonal antibody in tree shrews, thereby improving their utility as a model.
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