S100A4 accelerates tumorigenesis and invasion of human prostate cancer through the transcriptional regulation of matrix metalloproteinase 9
暂无分享,去创建一个
Mohammad Saleem | Hasan Mukhtar | V. Adhami | H. Mukhtar | J. Johnson | S. Sarfaraz | Shannon R Reagan-Shaw | V. Spiegelman | I. Elcheva | N. Khan | Sami Sarfaraz | Vijayasaradhi Setaluri | V. Setaluri | Naghma Khan | Shannon Reagan-Shaw | Mee-Hyang Kweon | Jeremy James Johnson | Vaqar Mustafa Adhami | Irina Elcheva | Bilal Bin Hafeez | Kumar M. R. Bhat | Vladimir S. Spiegelman | M. Saleem | K. Bhat | M. Kweon | Bilal bin Hafeez | Mee-Hyang Kweon | Irina A. Elcheva
[1] Yong Jiang,et al. Regulation of matrix metalloproteinase-9 (MMP-9) by translational efficiency in murine prostate carcinoma cells. , 2002, Cancer research.
[2] 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.
[3] David J Weber,et al. S100A4, a Mediator of Metastasis* , 2006, Journal of Biological Chemistry.
[4] C. Heizmann. The multifunctional S100 protein family. , 2002, Methods in molecular biology.
[5] M. Seiki,et al. Differentiation-dependent expression of gelatinase B/matrix metalloproteinase-9 in trophoblast cells , 1999, Cell and Tissue Research.
[6] R. Barraclough,et al. Elevated expression of calcium‐binding protein p9Ka is associated with increasing malignant characteristics of rat prostate carcinoma cells , 1997, International journal of cancer.
[7] G. Maelandsmo,et al. Expression of matrix metalloproteinases and the metastasis-associated gene S100A4 in human neuroblastoma and primitive neuroectodermal tumor cells. , 2001, Journal of pediatric surgery.
[8] Tajamul Hussain,et al. Differential expression of S100A2 and S100A4 during progression of human prostate adenocarcinoma. , 2003, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[9] V. Adhami,et al. Prognostic significance of metastasis-associated protein S100A4 (Mts1) in prostate cancer progression and chemoprevention regimens in an autochthonous mouse model. , 2005, Clinical cancer research : an official journal of the American Association for Cancer Research.
[10] M. Stearns,et al. Evidence for increased activated metalloproteinase 2 (MMP-2a) expression associated with human prostate cancer progression. , 1996, Oncology research.
[11] E. Hovig,et al. S100A4 regulates membrane induced activation of matrix metalloproteinase-2 in osteosarcoma cells , 2003, Clinical & Experimental Metastasis.
[12] W. Satariano,et al. Cause of death in men diagnosed with prostate carcinoma , 1998, Cancer.
[13] V. Adhami,et al. A novel dietary triterpene Lupeol induces fas-mediated apoptotic death of androgen-sensitive prostate cancer cells and inhibits tumor growth in a xenograft model. , 2005, Cancer research.
[14] G. Tortolero-Luna,et al. Elevated expression of MMP-13 and TIMP-1 in head and neck squamous cell carcinomas may reflect increased tumor invasiveness , 2004, BMC Cancer.
[15] C. Heizmann,et al. Supratentorial Pilocytic Astrocytomas, Astrocytomas, Anaplastic Astrocytomas and Glioblastomas are Characterized by a Differential Expression of S100 Proteins , 1999, Brain pathology.
[16] A. Jemal,et al. Cancer Statistics, 2006 , 2006, CA: a cancer journal for clinicians.
[17] Y. Soini,et al. Matrix Metalloproteinases 2 and 9 and Their Tissue Inhibitors in Low Malignant Potential Ovarian Tumors , 2004, Tumor Biology.
[18] V. Adhami,et al. Oral Consumption of Green Tea Polyphenols Inhibits Insulin-Like Growth Factor-I–Induced Signaling in an Autochthonous Mouse Model of Prostate Cancer , 2004, Cancer Research.
[19] I. Thompson,et al. Update on chemoprevention of prostate cancer , 2004, Current opinion in urology.
[20] M. Grigorian,et al. Extracellular S100A4(mts1) stimulates invasive growth of mouse endothelial cells and modulates MMP-13 matrix metalloproteinase activity , 2004, Oncogene.
[21] P. Rudland,et al. S100A4 (p9Ka) protein in colon carcinoma and liver metastases: association with carcinoma cells and T-lymphocytes , 2002, British Journal of Cancer.
[22] T. Adrian,et al. Pancreatic cancer stimulates pancreatic stellate cell proliferation and TIMP-1 production through the MAP kinase pathway. , 2004, Biochemical and biophysical research communications.
[23] S. Leinster,et al. Association of S100A4 and osteopontin with specific prognostic factors and survival of patients with minimally invasive breast cancer. , 2006, Clinical cancer research : an official journal of the American Association for Cancer Research.
[24] Ravikumar Aalinkeel,et al. Gene Expression of Angiogenic Factors Correlates with Metastatic Potential of Prostate Cancer Cells , 2004, Cancer Research.