[1]
|
Yook S H, Oltvai Z N, Barabsi A L. Functional and topological characterization of protein interaction networks. Proteomics, 2004, 4(4):928-942
|
[2]
|
[2] Tang X W, Wang J X, Liu B B, Li M, Chen G, Pan Y. A comparison of the functional modules identified from time course and static PPI network data. BMC Bioinformatics, 2011, 12(1):339
|
[3]
|
[3] Wu F X, Ressom H, Dunn M J, Wang J X, Peng X Q, Li M, Pan Y. Construction and application of dynamic protein interaction network based on time course gene expression data. Proteomics, 2013, 13(2):301-312
|
[4]
|
[4] Wang J X, Peng X Q, Peng W, Wu F X. Dynamic protein interaction network construction and applications. Proteomics, 2014, 14(4-5):338-352
|
[5]
|
[5] Mantzaris A V, Bassett D S, Wymbs N F, Estrada E, Porter M A, Mucha P J, Grafton S T, Higham D J. Dynamic network centrality summarizes learning in the human brain. Journal of Complex Networks, 2013, 1(1):83-92
|
[6]
|
Chen Guan-Rong. Problems and challenges in control theory under complex dynamical network environments. Acta Automatica Sinica, 2013, 39(4):312-321(陈关荣. 复杂动态网络环境下控制理论遇到的问题与挑战. 自动化学报, 2013, 39(4):312-321)
|
[7]
|
[7] Tu B P, Kudlicki A, Rowicka M, McKnight S L. Logic of the yeast metabolic cycle:temporal compartmentalization of cellular processes. Science, 2005, 310(5751):1152-1158
|
[8]
|
[8] Zhao B H, Wang J X, Li M, Wu F X, Pan Y. Prediction of essential proteins based on overlapping essential modules. IEEE Transactions on NanoBioscience, 2014, 13(4):415-424
|
[9]
|
Ji Jun-Zhong, Liu Zhi-Jun, Liu Hong-Xin, Liu Chun-Nian. An overview of research on functional module detection for protein-protein interaction networks. Acta Automatica Sinica, 2014, 40(4):577-593(冀俊忠, 刘志军, 刘红欣, 刘椿年. 蛋白质相互作用网络功能模块检测的研究综述. 自动化学报, 2014, 40(4):577-593)
|
[10]
|
Hawkins T, Chitale M, Luban S, Kihara D. PFP:automated prediction of gene ontology functional annotations with confidence scores using protein sequence data. Proteins:Structure, Function, and Bioinformatics, 2009, 74(3):566-582
|
[11]
|
Zhao B H, Wang J X, Li M, Wu F X, Pan Y. Detecting protein complexes based on uncertain graph model. IEEE/ACM Transactions on Computational Biology and Bioinformatics, 2014, 11(3):486-497
|
[12]
|
Schwikowski B, Uetz P, Fields S. A network of protein-protein interactions in yeast. Nature Biotechnology, 2000, 18(12):1257-1261
|
[13]
|
Zhang S, Chen H, Liu K, Sun Z R. Inferring protein function by domain context similarities in protein-protein interaction networks. BMC Bioinformatics, 2009, 10(1):395
|
[14]
|
Peng W, Wang J X, Cai J, Chen L, Li M, Wu F X. Improving protein function prediction using domain and protein complexes in PPI networks. BMC Systems Biology, 2014, 8(1):35
|
[15]
|
Liang S D, Zheng D D, Standley D M, Guo H R, Zhang C. A novel function prediction approach using protein overlap networks. BMC Systems Biology, 2013, 7(1):61
|
[16]
|
Krogan N J, Cagney G, Yu H Y, Zhong G Q, Guo X H, Ignatchenko A, Li J, Pu S Y, Datta N, Tikuisis A P, Punna T, Peregrn-Alvarez J M, Shales M, Zhang X, Davey M, Robinson M D, Paccanaro A, Bray J E, Sheung A, Beattie B, Richards D P, Canadien V, Lalev A, Mena F, Wong P, Starostine A, Canete M M, Vlasblom J, Wu S, Orsi C, Collins S R, Chandran S, Haw R, Rilstone J J, Gandi K, Thompson N J, Musso G, St Onge P, Ghanny S, Lam M H Y, Butland G, Altaf-Ul A M, Kanaya S, Shilatifard A, O'Shea E, Weissman J S, Ingles C J, Hughes T R, Parkinson J, Gerstein M, Wodak S J, Emili A, Greenblatt J F. Global landscape of protein complexes in the yeast Saccharomyces cerevisiae. Nature, 2006, 440(7084):637-643
|
[17]
|
Collins M O, Yu L, Choudhary J S. Analysis of protein phosphorylation on a proteome-scale. Proteomics, 2007, 7(16):2751-2768
|