YAP/TAZ-Dependent Reprogramming of Colonic Epithelium Links ECM Remodeling to Tissue Regeneration
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O. Nielsen | Tetsuya Nakamura | Mamoru Watanabe | M. T. Pedersen | C. Madsen | J. Johansen | S. Piccolo | L. Azzolin | C. F. Rundsten | Jordi Guiu | K. Jensen | Martti Maimets | Pawel J. Schweiger | R. Fordham | Yuan Li | Mariana R. P. Alves | H. L. Larsen | Shiro Yui | Stine L. Hansen | Stine L Hansen
[1] D. Hwang,et al. Prostaglandin E2 Activates YAP and a Positive-Signaling Loop to Promote Colon Regeneration After Colitis but Also Carcinogenesis in Mice. , 2017, Gastroenterology.
[2] H. Miyoshi,et al. Prostaglandin E2 promotes intestinal repair through an adaptive cellular response of the epithelium , 2017, The EMBO journal.
[3] S. Bicciato,et al. Induction of Expandable Tissue-Specific Stem/Progenitor Cells through Transient Expression of YAP/TAZ , 2016, Cell stem cell.
[4] K. Jensen,et al. Modeling human disease using organotypic cultures. , 2016, Current opinion in cell biology.
[5] Hans Clevers,et al. Designer matrices for intestinal stem cell and organoid culture , 2016, Nature.
[6] Zachary J. Heins,et al. Genomic Alterations Observed in Colitis-Associated Cancers Are Distinct From Those Found in Sporadic Colorectal Cancers and Vary by Type of Inflammatory Bowel Disease. , 2016, Gastroenterology.
[7] G. Vassart,et al. Trop2 marks transient gastric fetal epithelium and adult regenerating cells after epithelial damage , 2016, Development.
[8] M. Pittman,et al. Whole-Exome Sequencing Analyses of Inflammatory Bowel Disease-Associated Colorectal Cancers. , 2016, Gastroenterology.
[9] J. Wrana,et al. Yap-dependent reprogramming of Lgr5+ stem cells drives intestinal regeneration and cancer , 2015, Nature.
[10] Nam‐Gyun Kim,et al. Adhesion to fibronectin regulates Hippo signaling via the FAK–Src–PI3K pathway , 2015, The Journal of cell biology.
[11] Laurent Beaugerie,et al. Cancers complicating inflammatory bowel disease. , 2015, The New England journal of medicine.
[12] John T. Chang,et al. A gp130–Src–YAP module links inflammation to epithelial regeneration , 2015, Nature.
[13] Matthew E. Ritchie,et al. limma powers differential expression analyses for RNA-sequencing and microarray studies , 2015, Nucleic acids research.
[14] P. Rutgeerts,et al. Integrated miRNA and mRNA Expression Profiling in Inflamed Colon of Patients with Ulcerative Colitis , 2014, PloS one.
[15] S. Dupont,et al. The biology of YAP/TAZ: hippo signaling and beyond. , 2014, Physiological reviews.
[16] Giuseppe Basso,et al. YAP/TAZ Incorporation in the β-Catenin Destruction Complex Orchestrates the Wnt Response , 2014, Cell.
[17] E. Fuchs,et al. Plasticity of epithelial stem cells in tissue regeneration , 2014, Science.
[18] Julia B. Cordero,et al. c-Src drives intestinal regeneration and transformation , 2014, The EMBO journal.
[19] A. Rosato,et al. Metabolic control of YAP and TAZ by the mevalonate pathway , 2014, Nature Cell Biology.
[20] Hans Clevers,et al. Functional repair of CFTR by CRISPR/Cas9 in intestinal stem cell organoids of cystic fibrosis patients. , 2013, Cell stem cell.
[21] Tetsuya Nakamura,et al. Transplantation of Expanded Fetal Intestinal Progenitors Contributes to Colon Regeneration after Injury , 2013, Cell stem cell.
[22] Gabriela Vasile,et al. Identification of Lgr5-independent spheroid-generating progenitors of the mouse fetal intestinal epithelium. , 2013, Cell reports.
[23] R. Wells,et al. Robust cellular reprogramming occurs spontaneously during liver regeneration. , 2013, Genes & development.
[24] B. Giepmans,et al. EpCAM proteolysis: new fragments with distinct functions? , 2013, Bioscience reports.
[25] S. Bicciato,et al. Role of TAZ as Mediator of Wnt Signaling , 2012, Cell.
[26] Shuji Ogino,et al. Restriction of intestinal stem cell expansion and the regenerative response by YAP , 2012, Nature.
[27] Alexander van Oudenaarden,et al. Identifying the stem cell of the intestinal crypt: strategies and pitfalls. , 2012, Cell stem cell.
[28] S. Ichinose,et al. Functional engraftment of colon epithelium expanded in vitro from a single adult Lgr5+ stem cell , 2012, Nature Medicine.
[29] Hans Clevers,et al. Lrig1 controls intestinal stem cell homeostasis by negative regulation of ErbB signalling , 2012, Nature Cell Biology.
[30] Hans Clevers,et al. Long-term expansion of epithelial organoids from human colon, adenoma, adenocarcinoma, and Barrett's epithelium. , 2011, Gastroenterology.
[31] J. Casanova,et al. FAK Regulates Intestinal Epithelial Cell Survival and Proliferation during Mucosal Wound Healing , 2011, PloS one.
[32] Nicola Elvassore,et al. Role of YAP/TAZ in mechanotransduction , 2011, Nature.
[33] A. Maitra,et al. The Hippo signaling pathway restricts the oncogenic potential of an intestinal regeneration program. , 2010, Genes & development.
[34] Rafael A. Irizarry,et al. A framework for oligonucleotide microarray preprocessing , 2010, Bioinform..
[35] M. Giovannini,et al. The Merlin/NF2 tumor suppressor functions through the YAP oncoprotein to regulate tissue homeostasis in mammals. , 2010, Developmental cell.
[36] Hiroyuki Miyoshi,et al. The Role of Stromal Stem Cells in Tissue Regeneration and Wound Repair , 2009, Science.
[37] H. Clevers,et al. Single Lgr5 stem cells build cryptvillus structures in vitro without a mesenchymal niche , 2009, Nature.
[38] Arvind K. Chavali,et al. Intestinal Epithelial Cell Up-Regulation of LY6 Molecules during Colitis Results in Enhanced Chemokine Secretion , 2008, The Journal of Immunology.
[39] R. Jaenisch,et al. YAP1 Increases Organ Size and Expands Undifferentiated Progenitor Cells , 2007, Current Biology.
[40] L. Luo,et al. A global double‐fluorescent Cre reporter mouse , 2007, Genesis.
[41] S. Tavaré,et al. beadarray: R classes and methods for Illumina bead-based data , 2007, Bioinform..
[42] Daniel Metzger,et al. Tissue‐specific and inducible Cre‐mediated recombination in the gut epithelium , 2004, Genesis.
[43] S. Watt,et al. Stem cell plasticity , 2003, British journal of haematology.
[44] Alexander van Oudenaarden,et al. The Lgr 5 intestinal stem cell signature : robust expression of proposed quiescent ‘ þ 4 ’ cell markers , 2012 .
[45] 油井 史郎. Functional engraftment of colon epithelium expanded in vitro from a single adult Lgr5⁺ stem cell , 2011 .
[46] I. Weissman,et al. The biology of hematopoietic stem cells. , 1995, Annual review of cell and developmental biology.