The metastasis associated protein S100A4: role in tumour progression and metastasis
暂无分享,去创建一个
[1] M. Grigorian,et al. Suppression of tumor development and metastasis formation in mice lacking the S100A4(mts1) gene. , 2005, Cancer research.
[2] Marisa Martin-Fernandez,et al. Mutually antagonistic actions of S100A4 and S100A1 on normal and metastatic phenotypes , 2005, Oncogene.
[3] Eithne Costello,et al. Analysis of gene expression in cancer cell lines identifies candidate markers for pancreatic tumorigenesis and metastasis , 2004, International journal of cancer.
[4] V. Berezin,et al. The Mts1/S100A4 protein is a neuroprotectant , 2004, Journal of neuroscience research.
[5] Helen H. W. Chen,et al. Expression of S100A4 and Met: Potential Predictors for Metastasis and Survival in Early-Stage Breast Cancer , 2004, Oncology.
[6] K. B. Pedersen,et al. Sensitization of interferon-γ induced apoptosis in human osteosarcoma cells by extracellular S100A4 , 2004, BMC Cancer.
[7] M. Grigorian,et al. Extracellular S100A4(mts1) stimulates invasive growth of mouse endothelial cells and modulates MMP-13 matrix metalloproteinase activity , 2004, Oncogene.
[8] Peng-Yuan Yang,et al. Differential proteomic analysis of human hepatocellular carcinoma cell line metastasis-associated proteins , 2004, Journal of Cancer Research and Clinical Oncology.
[9] M. Grigorian,et al. Functional Significance of Metastasis-inducing S100A4(Mts1) in Tumor-Stroma Interplay* , 2004, Journal of Biological Chemistry.
[10] C. Heizmann,et al. Cancer predisposition in mice deficient for the metastasis-associated Mts1(S100A4) gene , 2004, Oncogene.
[11] C. Heizmann,et al. S100 protein translocation in response to extracellular S100 is mediated by receptor for advanced glycation endproducts in human endothelial cells. , 2004, Biochemical and biophysical research communications.
[12] D. Helfman,et al. Characterization of the Metastasis-associated Protein, S100A4 , 2003, Journal of Biological Chemistry.
[13] W. Park,et al. Overexpression of S100A4 is closely related to the aggressiveness of gastric cancer , 2003, APMIS : acta pathologica, microbiologica, et immunologica Scandinavica.
[14] K. B. Pedersen,et al. Expression of S100A4, E-cadherin, α- and β-catenin in breast cancer biopsies , 2002, British Journal of Cancer.
[15] C. Heizmann,et al. Extracellular S100A4 stimulates the migration rate of astrocytic tumor cells by modifying the organization of their actin cytoskeleton. , 2002, Biochimica et biophysica acta.
[16] M. Grigorian,et al. Liprin β1, a Member of the Family of LAR Transmembrane Tyrosine Phosphatase-interacting Proteins, Is a New Target for the Metastasis-associated Protein S100A4 (Mts1)* , 2002, The Journal of Biological Chemistry.
[17] P. Rudland,et al. Binding to intracellular targets of the metastasis-inducing protein, S100A4 (p9Ka). , 2001, Biochemical and biophysical research communications.
[18] V. Berezin,et al. The metastasis-associated Mts1(S100A4) protein could act as an angiogenic factor , 2001, Oncogene.
[19] G. Selivanova,et al. Tumor Suppressor p53 Protein Is a New Target for the Metastasis-associated Mts1/S100A4 Protein , 2001, The Journal of Biological Chemistry.
[20] V. Berezin,et al. Oligomeric Forms of the Metastasis-related Mts1 (S100A4) Protein Stimulate Neuronal Differentiation in Cultures of Rat Hippocampal Neurons* , 2000, The Journal of Biological Chemistry.
[21] H. Huttunen,et al. Coregulation of Neurite Outgrowth and Cell Survival by Amphoterin and S100 Proteins through Receptor for Advanced Glycation End Products (RAGE) Activation* , 2000, The Journal of Biological Chemistry.
[22] Y. Hwang,et al. Two distinct mechanisms for regulation of nonmuscle myosin assembly via the heavy chain: phosphorylation for MIIB and mts 1 binding for MIIA. , 2000, Biochemistry.
[23] D. Scott,et al. Heterocomplex formation between metastasis‐related protein S100A4 (Mts1) and S100A1 as revealed by the yeast two‐hybrid system , 2000, FEBS letters.
[24] M. White,et al. Interaction in Vivo and in Vitro of the Metastasis-inducing S100 Protein, S100A4 (p9Ka) with S100A1* , 2000, The Journal of Biological Chemistry.
[25] J. Winstanley,et al. Prognostic significance of the metastasis-inducing protein S100A4 (p9Ka) in human breast cancer. , 2000, Cancer research.
[26] O. T. Odegaard,et al. S100A4 involvement in metastasis: deregulation of matrix metalloproteinases and tissue inhibitors of matrix metalloproteinases in osteosarcoma cells transfected with an anti-S100A4 ribozyme. , 1999, Cancer research.
[27] M. Neurath,et al. RAGE Mediates a Novel Proinflammatory Axis A Central Cell Surface Receptor for S100/Calgranulin Polypeptides , 1999, Cell.
[28] I. Bronstein,et al. Metastasis-associated Mts1 (S100A4) Protein Modulates Protein Kinase C Phosphorylation of the Heavy Chain of Nonmuscle Myosin* , 1998, The Journal of Biological Chemistry.
[29] E. Hovig,et al. Reversal of the in vivo metastatic phenotype of human tumor cells by an anti-CAPL (mts1) ribozyme. , 1996, Cancer research.
[30] P. Rudland,et al. Expression of the calcium-binding protein S100A4 (p9Ka) in MMTV-neu transgenic mice induces metastasis of mammary tumours. , 1996, Oncogene.
[31] M. Grigorian,et al. Metastasis of mammary carcinomas in GRS/A hybrid mice transgenic for the mts1 gene. , 1996, Oncogene.
[32] M. Grigorian,et al. Non-muscle myosin heavy chain as a possible target for protein encoded by metastasis-related mts-1 gene. , 1994, The Journal of biological chemistry.
[33] Yohko Nakamura,et al. Involvement of Sl00–related Calcium–binding Protein pEL98 (or mts1) in Cell Motility and Tumor Cell Invasion , 1994, Japanese journal of cancer research : Gann.
[34] Y. Hasegawa,et al. Binding of pEL98 protein, an S100-related calcium-binding protein, to nonmuscle tropomyosin , 1994, The Journal of cell biology.
[35] M. Grigorian,et al. The mts1 gene and control of tumor metastasis. , 1993, Gene.
[36] K. Kohama,et al. Calvasculin, as a factor affecting the microfilament assemblies in rat fibroblasts transfected by src gene , 1993, FEBS letters.
[37] P. Rudland,et al. Induction of the metastatic phenotype by transfection of a benign rat mammary epithelial cell line with the gene for p9Ka, a rat calcium-binding protein, but not with the oncogene EJ-ras-1. , 1993, Oncogene.
[38] M. S. Lakshmi,et al. Metastasis associated MTS1 and NM23 genes affect tubulin polymerisation in B16 melanomas: a possible mechanism of their regulation of metastatic behaviour of tumours. , 1993, Anticancer research.
[39] M. Grigorian,et al. Isolation and characterization of a gene specifically expressed in different metastatic cells and whose deduced gene product has a high degree of homology to a Ca2+-binding protein family. , 1989, Genes & development.
[40] R. Gilbertson,et al. ERBB2 up-regulates S100A4 and several other prometastatic genes in medulloblastoma. , 2003, Cancer research.
[41] L. Mazzucchelli. Protein S100A4: too long overlooked by pathologists? , 2002, The American journal of pathology.