A point mutation in the MET oncogene abrogates metastasis without affecting transformation.
暂无分享,去创建一个
S. Ménard | A. Bardelli | P. Comoglio | S. Giordano | Z. Zhen | P. Comoglio | C. Ponzetto
[1] S. Scherer,et al. Germline and somatic mutations in the tyrosine kinase domain of the MET proto-oncogene in papillary renal carcinomas , 1997, Nature Genetics.
[2] P. Comoglio,et al. Constitutive activation of the RON gene promotes invasive growth but not transformation , 1996, Molecular and cellular biology.
[3] W. Birchmeier,et al. Interaction between Gab1 and the c-Met receptor tyrosine kinase is responsible for epithelial morphogenesis , 1996, Nature.
[4] A. Simeone,et al. Uncoupling of Grb2 from the Met Receptor In Vivo Reveals Complex Roles in Muscle Development , 1996, Cell.
[5] A. Bardelli,et al. Specific Uncoupling of GRB2 from the Met Receptor , 1996, The Journal of Biological Chemistry.
[6] D. Kamikura,et al. Pathways Downstream of Shc and Grb2 Are Required for Cell Transformation by the Tpr-Met Oncoprotein* , 1996, The Journal of Biological Chemistry.
[7] P. Comoglio,et al. The HGF receptor family: unconventional signal transducers for invasive cell growth , 1996, Genes to cells : devoted to molecular & cellular mechanisms.
[8] A. Godwin,et al. A Grb2-associated docking protein in EGF- and insulin-receptor signalling , 1996, Nature.
[9] A. Bardelli,et al. The motogenic and mitogenic responses to HGF are amplified by the Shc adaptor protein. , 1995, Oncogene.
[10] B. Nordlinger,et al. Overexpression and amplification of the met/HGF receptor gene during the progression of colorectal cancer. , 1995, Clinical cancer research : an official journal of the American Association for Cancer Research.
[11] G. Nicolson,et al. c-erbB-2/neu overexpression enhances metastatic potential of human lung cancer cells by induction of metastasis-associated properties. , 1994, Cancer research.
[12] G. V. Vande Woude,et al. Invasiveness and metastasis of NIH 3T3 cells induced by Met-hepatocyte growth factor/scatter factor autocrine stimulation. , 1994, Proceedings of the National Academy of Sciences of the United States of America.
[13] A. Bardelli,et al. A multifunctional docking site mediates signaling and transformation by the hepatocyte growth factor/scatter factor receptor family , 1994, Cell.
[14] J. Parsons,et al. The protooncogene c-sea encodes a transmembrane protein-tyrosine kinase related to the Met/hepatocyte growth factor/scatter factor receptor. , 1993, Proceedings of the National Academy of Sciences of the United States of America.
[15] S. Henikoff,et al. Unwinding dosage compensation , 1993, Cell.
[16] L. Naldini,et al. Hepatocyte growth factor is a potent angiogenic factor which stimulates endothelial cell motility and growth , 1992, The Journal of cell biology.
[17] E Medico,et al. Expression of the Met/HGF receptor in normal and neoplastic human tissues. , 1991, Oncogene.
[18] A. Bardelli,et al. Scatter factor and hepatocyte growth factor are indistinguishable ligands for the MET receptor. , 1991, The EMBO journal.
[19] J. Rubin,et al. Identification of the hepatocyte growth factor receptor as the c-met proto-oncogene product. , 1991, Science.
[20] D. Smith,et al. The v-sea oncogene of avian erythroblastosis retrovirus S13: another member of the protein-tyrosine kinase gene family. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[21] C. Cooper,et al. Tyrosine kinase receptor indistinguishable from the c-met protein , 1989, Nature.
[22] K. Yanagihara,et al. Transformation by oncogenes encoding protein kinases induces the metastatic phenotype. , 1987, Science.
[23] Y Iwamoto,et al. A rapid in vitro assay for quantitating the invasive potential of tumor cells. , 1987, Cancer research.
[24] C. Cooper,et al. Molecular cloning of a new transforming gene from a chemically transformed human cell line , 1984, Nature.
[25] V. Devita,et al. Cancer : Principles and Practice of Oncology , 1982 .