Network analysis of skin tumor progression identifies a rewired genetic architecture affecting inflammation and tumor susceptibility
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Allan Balmain | D. Albertson | A. Balmain | J. Pérez-Losada | D. Quigley | M. To | Il-Jin Kim | Kevin K Lin | David A Quigley | Minh D To | Il Jin Kim | Donna G Albertson | Jonas Sjolund | Jesús Pérez-Losada | K. Lin | Jonas Sjolund | Il Jin Kim | Kevin K Lin | Donna G Albertson | Allan Balmain
[1] Hiroki Nagase,et al. Identification of Stk6/STK15 as a candidate low-penetrance tumor-susceptibility gene in mouse and human , 2003, Nature Genetics.
[2] N. Sharpless,et al. A mouse model of human oral-esophageal cancer. , 2002, The Journal of clinical investigation.
[3] A. Balmain,et al. Systems genetics analysis of cancer susceptibility: from mouse models to humans , 2009, Nature Reviews Genetics.
[4] P. Pharoah,et al. Sipa1 is a candidate for underlying the metastasis efficiency modifier locus Mtes1 , 2005, Nature Genetics.
[5] Hans Clevers,et al. Lgr5 marks cycling, yet long-lived, hair follicle stem cells , 2008, Nature Genetics.
[6] J. Diehl. Cycling to Cancer with Cyclin D1 , 2002, Cancer biology & therapy.
[7] Lu Lu,et al. Detection, Validation, and Downstream Analysis of Allelic Variation in Gene Expression , 2010, Genetics.
[8] P. Shannon,et al. Cytoscape: a software environment for integrated models of biomolecular interaction networks. , 2003, Genome research.
[9] Judy H. Cho,et al. Finding the missing heritability of complex diseases , 2009, Nature.
[10] K. Finegan,et al. Molecular and Cellular Pathobiology the Mitogen-activated Protein Kinase Kinase 4 Has a Pro-oncogenic Role in Skin Cancer , 2022 .
[11] A. Balmain,et al. Distinct genetic loci control development of benign and malignant skin tumours in mice , 1995, Nature Genetics.
[12] Emma Lees,et al. Mammary hyperplasia and carcinoma in MMTV-cyclin D1 transgenic mice , 1994, Nature.
[13] Hiroki Nagase,et al. Genetic architecture of murine skin inflammation and tumor susceptibility , 2016 .
[14] Rainer Breitling,et al. Expression Quantitative Trait Loci Are Highly Sensitive to Cellular Differentiation State , 2009, PLoS genetics.
[15] Ajay N. Jain,et al. Mapping segmental and sequence variations among laboratory mice using BAC array CGH. , 2005, Genome research.
[16] T. Shimomura,et al. The RAIG family member, GPRC5D, is associated with hard-keratinized structures. , 2004, The Journal of investigative dermatology.
[17] S. Cullen,et al. Granzymes in cancer and immunity , 2010, Cell Death and Differentiation.
[18] J. Tschopp,et al. Granzymes, a Family of Serine Proteases Released from Granules of Cytolytic T Lymphocytes upon T Cell Receptor Stimulation , 1988, Immunological reviews.
[19] A. Tsalenko,et al. Genetic variation in putative regulatory loci controlling gene expression in breast cancer , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[20] A. Balmain,et al. Carcinogen-specific mutation and amplification of Ha-ras during mouse skin carcinogenesis , 1986, Nature.
[21] C. Dinarello,et al. Clinical and experimental approaches to the pathophysiology of interleukin-18 in cancer progression , 2006, Cancer and Metastasis Reviews.
[22] Jonathan Flint,et al. Genetic architecture of quantitative traits in mice, flies, and humans. , 2009, Genome research.
[23] R. Doerge,et al. Empirical threshold values for quantitative trait mapping. , 1994, Genetics.
[24] John D. Storey,et al. Statistical significance for genomewide studies , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[25] C. Molony,et al. Genetic analysis of genome-wide variation in human gene expression , 2004, Nature.
[26] Vivian G. Cheung,et al. Genetic analysis of radiation-induced changes in human gene expression , 2009, Nature.
[27] Cestmir Vlcek,et al. Ptprj is a candidate for the mouse colon-cancer susceptibility locus Scc1 and is frequently deleted in human cancers , 2002, Nature Genetics.
[28] M. McCarthy,et al. Genome-wide association studies for complex traits: consensus, uncertainty and challenges , 2008, Nature Reviews Genetics.
[29] R. Stoughton,et al. Genetics of gene expression surveyed in maize, mouse and man , 2003, Nature.
[30] T. Slaga,et al. Sequential trisomization of chromosomes 6 and 7 in mouse skin premalignant lesions , 1989, Molecular carcinogenesis.
[31] L. Kruglyak,et al. Genetic Dissection of Transcriptional Regulation in Budding Yeast , 2002, Science.
[32] Robert W. Williams,et al. Complex trait analysis of gene expression uncovers polygenic and pleiotropic networks that modulate nervous system function , 2005, Nature Genetics.
[33] R. Tibshirani,et al. Significance analysis of microarrays applied to the ionizing radiation response , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[34] Hao Wu,et al. R/qtl: QTL Mapping in Experimental Crosses , 2003, Bioinform..
[35] A. Balmain,et al. Genetic changes in skin tumor progression: Correlation between presence of a mutant ras gene and loss of heterozygosity on mouse chromosome 7 , 1990, Cell.
[36] A. Balmain,et al. Epistatic interactions between skin tumor modifier loci in interspecific (spretus/musculus) backcross mice. , 2001, Cancer research.
[37] E. Stone,et al. The genetics of quantitative traits: challenges and prospects , 2009, Nature Reviews Genetics.