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Subtype-specific CpG island shore methylation and mutation patterns in 30 breast cancer cell lines.

, , , and . BMC Systems Biology, 10 (4): 433-443 (2016)

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Bio and health informatics meets cloud : BioVLab as an example., , , , , and . Health Inf. Sci. Syst., 1 (1): 6 (2013)HTRgene: a computational method to perform the integrated analysis of multiple heterogeneous time-series data: case analysis of cold and heat stress response signaling genes in Arabidopsis., , , , , and . BMC Bioinformatics, 20-S (16): 588:1-588:14 (2019)Subtype-specific CpG island shore methylation and mutation patterns in 30 breast cancer cell lines., , , and . BMC Systems Biology, 10 (4): 433-443 (2016)Cloud-BS: A MapReduce-based bisulfite sequencing aligner on cloud., , , and . J. Bioinformatics and Computational Biology, 16 (6): 1840028 (2018)BioVLAB-Cancer-Pharmacogenomics: tumor heterogeneity and pharmacogenomics analysis of multi-omics data from tumor on the cloud., , , , , and . Bioinform., 38 (1): 275-277 (2021)Genome-Wide Analysis and Modeling of DNA methylation susceptibility in 30 Breast Cancer Cell Lines by using CPG Flanking Sequences., , , , , and . J. Bioinformatics and Computational Biology, (2013)HTRgene: Integrating Multiple Heterogeneous Time-series Data to Investigate Cold and Heat Stress Response Signaling Genes in Arabidopsis., , , , , and . BIBM, page 393-398. IEEE Computer Society, (2018)EGGSlicer: predicting biologically meaningful gene sets from gene clusters using gene ontology information., , , and . BCB, page 448-450. ACM, (2010)Transitioning BioVLab cloud workbench to a science gateway., , , , , and . TG, page 40:1-40:2. ACM, (2011)BioVLAB-MMIA: A Reconfigurable Cloud Computing Environment for microRNA and mRNA Integrated Analysis., , , , , , , , , and . BIBM, page 494-499. IEEE Computer Society, (2011)