|
参考文献
- Lee JH, Marshall JC, Steeg PS, et al. Altered gene and protein expression by
Nm23-H1 in metastasis suppression. Mol Cell Biochem, 2009, 329(1-2):
141-148.[LinkOut]
- Allan AL, Vantyghem SA, Tuck AB, et al. Tumor dormancy and cancer stem
cells: implications for the biology and treatment of breast cancer metastasis.
Breast Dis, 2006, 26: 87-98.[LinkOut]
- Townson JL, Chambers AF. Dormancy of solitary metastatic cells. Cell
Cycle, 2006, 5(16): 1744-1750.[LinkOut]
- Steeg PS. Tumor metastasis: mechanistic insights and clinical challenges. Nat
Med, 2006, 12(8): 895-904.[LinkOut]
- Horak CE, Lee JH, Marshall JC, et al. The role of metastasis suppressor genes
in metastatic dormancy. APMIS, 2008, 116(7-8): 586-601.[LinkOut]
- Aggarwal BB, Kunnumakkara AB, Harikumar KB, et al. Signal transducer and
activator of transcription-3, inflammation, and cancer: how intimate is the
relationship? Ann N Y Acad Sci, 2009, 1171: 59-76.[LinkOut]
- Wang X, Liu X, Fang J, et al. Coactivator P100 protein enhances STAT6-
dependent transcriptional activation but has no effect on STAT1-mediated gene transcription. Anat Rec (Hoboken), 2010, 293(6): 1010-1016.[LinkOut]
- Schindler C, Plumlee C. Inteferons pen the JAK-STAT pathway. Semin Cell
Dev Biol, 2008, 19(4): 311-318.[LinkOut]
- Akira S, Nishio Y, Inoue M, et al. Molecular cloning of APRF, a novel IFNstimulated
gene factor 3p91-related transcription factor involved in the
gp130-mediated signaling pathway. Cell, 1994, 77(1): 63-71.[LinkOut]
- Zhong Z, Wen Z, Darnell JE Jr. Stat3: a STAT family member activated by
tyrosine phosphorylation in response to epidermal growth factor and interleukin-
6. Science, 1994, 264(5155): 95-98.[LinkOut]
- Cao X, Tay A, Guy GR, et al. Activation and association of Stat3 with Src in
v-Src-transformed cell lines. Mol Cell Biol, 1996, 16(4): 1595-1603.[LinkOut]
- Vignais ML, Sadowski HB, Watling D, et al. Platelet-derived growth factor
induces phosphorylation of multiple JAK family kinases and STAT proteins.
Mol Cell Biol, 1996, 16(4): 1759-1769.[LinkOut]
- Yu CL, Meyer DJ, Campbell GS, et al. Enhanced DNA-binding activity of a
Stat3-related protein in cells transformed by the Src oncoprotein. Science,
1995, 269(5220): 81-83.[LinkOut]
- Giordano V, De Falco G, Chiari R, et al. Shc mediates IL-6 signaling by interacting
with gp130 and Jak2 kinase. J Immunol, 1997, 158(9): 4097-4103.[LinkOut]
- Arredondo J, Chernyavsky AI, Jolkovsky DL et al. Receptor-mediated tobacco
toxicity: cooperation of the Ras/Raf-1/MEK1/ERK and JAK-2/STAT-3
pathways downstream of alpha7 nicotinic receptor in oral keratinocytes.
FASEB J, 2006, 20(12): 2093-2101.[LinkOut]
- Garcia R, Yu CL, Hudnall A, et al. Constitutive activation of Stat3 in fibroblasts
transformed by diverse oncoproteins and in breast carcinoma cells.
Cell Growth Differ, 1997, 8(12): 1267-1276.[LinkOut]
- Migone TS, Lin JX, Cereseto A, et al. Constitutively activated Jak-STAT
pathway in T cells transformed with HTLV-I. Science, 1995, 269(5220):
79-81.[LinkOut]
- Megeney LA, Perry RL, LeCouter JE, et al. bFGF and LIF signaling activates
STAT3 in proliferating myoblasts. Dev Genet, 1996, 19(2): 139-145.[LinkOut]
- Fossey SL, Liao AT, McCleese JK, et al. Characterization of STAT3 activation
and expression in canine and human osteosarcoma. BMC Cancer, 2009,
9: 81.[LinkOut]
- Levy DE, Darnell JE Jr. Stats: transcriptional control and biological impact.
Nat Rev Mol Cell Biol, 2002, 3(9): 651-662.[LinkOut]
- Devarajan E, Huang S. STAT3 as a central regulator of tumor metastases.
Curr Mol Med, 2009, 9(5): 626-633.[LinkOut]
- Catlett-Falcone R, Landowski TH, Oshiro MM, et al. Constitutive activation
of Stat3 signaling confers resistance to apoptosis in human U266 myeloma
cells. Immunity, 1999, 10(1): 105-115.[LinkOut]
- Ivanov VN, Bhoumik A, Krasilnikov M, et al. Cooperation between STAT3
and c-jun suppresses Fas transcription. Mol Cell, 2001, 7(3): 517-528.[LinkOut]
- Li X, Wang H, Lu X, et al. STAT3 blockade with shRNA enhances radiosensitivity
in Hep-2 human laryngeal squamous carcinoma cells. Oncol Rep,
2010, 23(2): 345-353.[LinkOut]
- Tanabe K, Matsushima-Nishiwaki R, Yamaguchi S, et al. Mechanisms of
tumor necrosis factor-alpha-induced interleukin-6 synthesis in glioma cells. J
Neuroinflammation, 2010, 7: 16.[LinkOut]
- Xie TX, Huang FJ, Aldape KD, et al. Activation of stat3 in human melanoma
promotes brain metastasis. Cancer Res, 2006, 66(6): 3188-3196.[LinkOut]
- Xie TX, Wei D, Liu M, et al. Stat3 activation regulates the expression of
matrix metalloproteinase-2 and tumor invasion and metastasis. Oncogene,
2004, 23(20): 3550-3560.[LinkOut]
- Stetler-Stevenson WG, Hewitt R, Corcoran M. Matrix metalloproteinases
and tumor invasion: from correlation and causality to the clinic. Semin Cancer
Biol, 1996, 7(3): 147-154.[LinkOut]
- Qiu Z, Huang C, Sun J, et al. RNA interference-mediated signal transducers
and activators of transcription 3 gene silencing inhibits invasion and metastasis
of human pancreatic cancer cells. Cancer Sci, 2007, 98(7): 1099-1106.[LinkOut]
- Huang W, Yu LF, Zhong J, et al. Stat3 is involved in angiotensin II-induced
expression of MMP2 in gastric cancer cells. Dig Dis Sci, 2009, 54(10):
2056-2062.[LinkOut]
- Li R, Li G, Deng L, et al. IL-6 augments the invasiveness of U87MG human
glioblastoma multiforme cells via up-regulation of MMP-2 and fascin-1. Oncol
Rep, 2010, 23(6): 1553-1559.[LinkOut]
- Itoh M, Murata T, Suzuki T, et al. Requirement of STAT3 activation for
maximal collagenase-1 (MMP-1) induction by epidermal growth factor
and malignant characteristics in T24 bladder cancer cells. Oncogene, 2006,
25(8): 1195-1204.[LinkOut]
- Dechow TN, Pedranzini L, Leitch A, et al. Requirement of matrix metalloproteinase-
9 for the transformation of human mammary epithelial cells by
Stat3-C. Proc Natl Acad Sci USA, 2004, 101(29): 10602-10607.[LinkOut]
- Zhang X, Yin P, DI D, et al. IL-6 regulates MMP-10 expression via JAK2/
STAT3 signaling pathway in a human lung adenocarcinoma cell line. Anticancer
Res, 2009, 29(11): 4497-4501.[LinkOut]
- Reiman JM, Knutson KL, Radisky DC. Immune promotion of epithelialmesenchymal
transition and generation of breast cancer stem cells. Cancer
Res, 2010, 70(8): 3005-3008.[LinkOut]
- Sullivan NJ, Sasser AK, Axel AE, et al. Interleukin-6 induces an epithelialmesenchymal
transition phenotype in human breast cancer cells. Oncogene,
2009, 28(33): 2940-2947.[LinkOut]
- Cheng GZ, Zhang WZ, Sun M, et al. Twist is transcriptionally induced by
activation of STAT3 and mediates STAT3 oncogenic function. J Biol Chem,
2008, 283(21): 14665-14673.[LinkOut]
- Zhao S, Venkatasubbarao K, Lazor JW, et al. Inhibition of STAT3 Tyr705
phosphorylation by Smad4 suppresses transforming growth factor betamediated
invasion and metastasis in pancreatic cancer cells. Cancer Res,
2008, 68(11): 4221-4228.[LinkOut]
- Lo HW, Hsu SC, Xia W, et al. Epidermal growth factor receptor cooperates
with signal transducer and activator of transcription 3 to induce epithelialmesenchymal
transition in cancer cells via up-regulation of TWIST gene
expression. Cancer Res, 2007, 67(19): 9066-9076.[LinkOut]
- Rak J, Filmus J, Kerbel RS. Reciprocal paracrine interactions between tumour
cells and endothelial cells: the 'angiogenesis progression' hypothesis.
Eur J Cancer, 1996, 32A(14): 2438-2450.[LinkOut]
- Niu G, Wright KL, Huang M, et al. Constitutive Stat3 activity up-regulates
VEGF expression and tumor angiogenesis. Oncogene, 2002, 21(13): 2000-2008.[LinkOut]
- Wei D, Le X, Zheng L, et al. Stat3 activation regulates the expression of vascular
endothelial growth factor and human pancreatic cancer angiogenesis
and metastasis. Oncogene, 2003, 22(3): 319-329.[LinkOut]
- Xu Q, Briggs J, Park S, et al. Targeting Stat3 blocks both HIF-1 and VEGF
expression induced by multiple oncogenic growth signaling pathways. Oncogene,
2005, 24(36): 5552-5560.[LinkOut]
- Yahata Y, Shirakata Y, Tokumaru S, et al. Nuclear translocation of phosphorylated
STAT3 is essential for vascular endothelial growth factor-induced human
dermal microvascular endothelial cell migration and tube formation. J
Biol Chem, 2003, 278(41): 40026-40031.[LinkOut]
- Schaefer LK, Ren Z, Fuller GN, et al. Constitutive activation of Stat3alpha
in brain tumors: localization to tumor endothelial cells and activation by the
endothelial tyrosine kinase receptor (VEGFR-2). Oncogene, 2002, 21(13):
2058-2065.[LinkOut]
- Liu Q, Li G, Li R, et al. IL-6 promotion of glioblastoma cell invasion and angiogenesis
in U251 and T98G cell lines. J Neurooncol, 2010. [Epub ahead of
print][LinkOut]
- Wojcik EJ, Sharifpoor S, Miller NA, et al. A novel activating function of c-Src
and Stat3 on HGF transcription in mammary carcinoma cells. Oncogene,
2006, 25(19): 2773-2784.[LinkOut]
- Hanahan D, Weinberg RA. The hallmarks of cancer. Cell, 2000, 100(1):
57-70.[LinkOut]
- Dunn GP, Bruce AT, Ikeda H, et al. Cancer immunoediting: from immunosurveillance
to tumor escape. Nat Immunol, 2002, 3(11): 991-998.[LinkOut]
- Pardoll D. Does the immune system see tumors as foreign or self? Annu Rev Immunol, 2003, 21: 807-839.[LinkOut]
- Stepkowski SM, Chen W, Ross JA, et al. STAT3: an important regulator of
multiple cytokine functions. Transplantation, 2008, 85(10): 1372-1377.[LinkOut]
- Niu G, Heller R, Catlett-Falcone R, et al. Gene therapy with dominantnegative
Stat3 suppresses growth of the murine melanoma B16 tumor in
vivo. Cancer Res, 1999, 59(20): 5059-5063.[LinkOut]
- Takeda K, Clausen BE, Kaisho T, et al. Enhanced Th1 activity and development
of chronic enterocolitis in mice devoid of Stat3 in macrophages and
neutrophils. Immunity, 1999, 10(1): 39-49.[LinkOut]
- Kortylewski M, Kujawski M, Wang T, et al. Inhibiting Stat3 signaling in the
hematopoietic system elicits multicomponent antitumor immunity. Nat
Med, 2005, 11(12): 1314-1321.[LinkOut]
- Wang T, Niu G, Kortylewski M, et al. Regulation of the innate and adaptive
immune responses by Stat-3 signaling in tumor cells. Nat Med, 2004, 10(1):
48-54.[LinkOut]
- Welte T, Zhang SS, Wang T, et al. STAT3 deletion during hematopoiesis
causes Crohn's disease-like pathogenesis and lethality: a critical role
of STAT3 in innate immunity. Proc Natl Acad Sci USA, 2003, 100(4):
1879-1884.[LinkOut]
- Sun Z, Yao Z, Liu S, et al. An oligonucleotide decoy for Stat3 activates the
immune response of macrophages to breast cancer. Immunobiology, 2006,
211(3): 199-209.[LinkOut]
|