System Network Biology Approaches in Exploring of Mechanism Behind Mutagenesis
暂无分享,去创建一个
Kavindra Kumar Kesari | Meenu Gupta | Anukriti | Swati Uniyal | Anupam Dhasmana | Qazi Mohd. Sajid Jamal | Mohtashim Lohani | K. Kesari | M. Lohani | Anupam Dhasmana | S. Uniyal | Anukriti | Meenu Gupta | Q. M. Jamal | Meenu Gupta
[1] P. Shannon,et al. Cytoscape: a software environment for integrated models of biomolecular interaction networks. , 2003, Genome research.
[2] Ove Frank,et al. Transitivity in stochastic graphs and digraphs , 1980 .
[3] Martin G. Everett,et al. A Graph-theoretic perspective on centrality , 2006, Soc. Networks.
[4] Jianzhi Zhang,et al. Why Do Hubs Tend to Be Essential in Protein Networks? , 2006, PLoS genetics.
[5] C. Frenz,et al. Neural network‐based prediction of mutation‐induced protein stability changes in Staphylococcal nuclease at 20 residue positions , 2005, Proteins.
[6] Igor Jurisica,et al. Functional topology in a network of protein interactions , 2004, Bioinform..
[7] Stephen P. Borgatti,et al. Centrality and network flow , 2005, Soc. Networks.
[8] C. Pritsos,et al. Oxidative DNA damage in mouse heart, liver, and lung tissue due to acute side-stream tobacco smoke exposure. , 1998, Archives of biochemistry and biophysics.
[9] Yun Li,et al. Dynamic modular architecture of protein-protein interaction networks beyond the dichotomy of ‘date' and ‘party' hubs , 2013, Scientific Reports.
[10] J. Jacquot,et al. Hubs and bottlenecks in plant molecular signalling networks. , 2010, The New phytologist.
[11] Mark Gerstein,et al. The Importance of Bottlenecks in Protein Networks: Correlation with Gene Essentiality and Expression Dynamics , 2007, PLoS Comput. Biol..
[12] Tore Opsahl,et al. Clustering in weighted networks , 2009, Soc. Networks.
[13] P. Bork,et al. Proteome survey reveals modularity of the yeast cell machinery , 2006, Nature.
[14] Zhiyong Lu,et al. PubMed and beyond: a survey of web tools for searching biomedical literature , 2011, Database J. Biol. Databases Curation.
[15] Ulrik Brandes,et al. On variants of shortest-path betweenness centrality and their generic computation , 2008, Soc. Networks.
[16] Stephen S. Hecht,et al. Tobacco carcinogens, their biomarkers and tobacco-induced cancer , 2003, Nature Reviews Cancer.
[17] T. Andrésson,et al. A Role for Protein–Protein Interaction Networks in the Identification and Characterization of Potential Biomarkers , 2013 .
[18] Ling Liu,et al. Construction and analysis of the protein-protein interaction network related to essential hypertension , 2013, BMC Systems Biology.
[19] Dianne P. O'Leary,et al. Why Do Hubs in the Yeast Protein Interaction Network Tend To Be Essential: Reexamining the Connection between the Network Topology and Essentiality , 2008, PLoS Comput. Biol..
[20] Davide Heller,et al. STRING v10: protein–protein interaction networks, integrated over the tree of life , 2014, Nucleic Acids Res..
[21] Muhammad Kamran Siddiqui,et al. Study of biological networks using graph theory , 2017, Saudi journal of biological sciences.
[22] L. Mirny,et al. Protein complexes and functional modules in molecular networks , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[23] O. Sporns,et al. Complex brain networks: graph theoretical analysis of structural and functional systems , 2009, Nature Reviews Neuroscience.
[24] Wlodzimierz Klonowski,et al. Why Nonlinear Biomedical Physics? , 2007, Nonlinear biomedical physics.
[25] A. Barabasi,et al. Network biology: understanding the cell's functional organization , 2004, Nature Reviews Genetics.
[26] Jimeng Sun,et al. Centralities in Large Networks: Algorithms and Observations , 2011, SDM.
[27] Julio R. Banga,et al. Reverse Engineering Cellular Networks with Information Theoretic Methods , 2013, Cells.
[28] Liudmila Ostroumova,et al. Local Clustering Coefficient in Generalized Preferential Attachment Models , 2015, WAW.
[29] D. Bertrand,et al. Nicotine addiction: the possible role of functional upregulation. , 2002, Trends in pharmacological sciences.
[30] Desmond J. Higham,et al. A clustering coefficient for weighted networks, with application to gene expression data , 2007, AI Commun..
[31] David S. Wishart,et al. T3DB: the toxic exposome database , 2014, Nucleic Acids Res..
[32] Marc R. Wilkins,et al. Dynamic Hubs Show Competitive and Static Hubs Non-Competitive Regulation of Their Interaction Partners , 2012, PloS one.
[33] Liudmila Ostroumova,et al. Global Clustering Coefficient in Scale-Free Networks , 2014, WAW.
[34] Chung-Ming Chen,et al. Computer-Aided Detection and Diagnosis in Medical Imaging , 2013, Comput. Math. Methods Medicine.
[35] David S. Wishart,et al. T3DB: a comprehensively annotated database of common toxins and their targets , 2009, Nucleic Acids Res..
[36] X. Lao,et al. Lymphocyte DNA damage in cigarette factory workers measured by the Comet assay. , 1999, Mutation research.
[37] Jelle Van Leene,et al. Hub Protein Controversy: Taking a Closer Look at Plant Stress Response Hubs , 2018, Front. Plant Sci..
[38] J. Baker,et al. Mutation Detection by Real-Time PCR: A Simple, Robust and Highly Selective Method , 2009, PloS one.
[39] N. Tretyakova,et al. Tobacco smoke carcinogens, DNA damage and p53 mutations in smoking-associated cancers , 2002, Oncogene.
[40] Alpan Raval,et al. Identifying Hubs in Protein Interaction Networks , 2009, PloS one.
[41] Cornelis J Stam,et al. Graph theoretical analysis of complex networks in the brain , 2007, Nonlinear biomedical physics.
[42] Jing Wang,et al. Understanding the Pathogenesis of Kawasaki Disease by Network and Pathway Analysis , 2013, Comput. Math. Methods Medicine.