A generalized approach to predicting protein-protein interactions between virus and host
Author:
Publisher
Springer Science and Business Media LLC
Subject
Genetics,Biotechnology
Link
http://link.springer.com/content/pdf/10.1186/s12864-018-4924-2.pdf
Reference16 articles.
1. Gatherer D. The 2014 Ebola virus disease outbreak in West Africa. J Gen Virol. 2014; 95:1619–24.
2. Cho SY, Kang JM, Ha YE, Park GE, Lee JY, Ko JH, Kim JM, Kang CI, Jo IJ, Ryu JG, Choi JR, Kim S, Huh HJ, Ki CS, Kang ES, Peck KR, Dhong HJ, Song JH, Chung DR, Kim YJ. MERS-CoV outbreak following a single patient exposure in an emergency room in South Korea: an epidemiological outbreak study. Lancet. 2016; 388(10048):994–1001.
3. Zhou HF, Gao SZ, Nguyen NN, Fan MY, Jin JJ, Liu B, Zhao L, Xiong G, Tan M, Li SJ, Wong LS. Stringent homology-based prediction of H. sapiens-M. tuberculosis H37Rv protein-protein interactions. Biol Direct. 2014; 9:5.
4. Zhou HF, Rezaei J, Hugo W, Gao SZ, Jin JJ, Fan MY, Yong CH, Wozniak M, Wong LS. Stringent DDI-based prediction of H. sapiens-M. tuberculosis H37Rv protein-protein interactions. BMC Syst Biol. 2013; 7(Suppl 6):S6.
5. Cui G, Fang C, Han K. Prediction of protein-protein interactions between viruses and human by an SVM model. BMC Bioinformatics. 2012; 13(Suppl 7):S5.
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