ADAM8 localizes to extravillous trophoblasts within the maternal–fetal interface and potentiates trophoblast cell line migration through a &bgr;1 integrin-mediated mechanism
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B. Castellana | A. Beristain | J. Baltayeva | D. L. Mara | J. Treissman | J. Atif | H. Le
[1] L. De Luca,et al. ADAM28 localizes to HLA-G+ trophoblasts and promotes column cell outgrowth. , 2017, Placenta.
[2] Thinzar M. Lwin,et al. ADAM12 induction by Twist1 promotes tumor invasion and metastasis via regulation of invadopodia and focal adhesions , 2017, Journal of Cell Science.
[3] C. Fiala,et al. Notch1 controls development of the extravillous trophoblast lineage in the human placenta , 2016, Proceedings of the National Academy of Sciences.
[4] Hunter L. Elliott,et al. Coordinated integrin activation by actin-dependent force during T-cell migration , 2016, Nature Communications.
[5] B. Castellana,et al. Maternal obesity drives functional alterations in uterine NK cells. , 2016, JCI insight.
[6] B. Kalionis,et al. Epithelial-mesenchymal transition during extravillous trophoblast differentiation , 2016, Cell adhesion & migration.
[7] J. Pollheimer,et al. Function and control of human invasive trophoblast subtypes: Intrinsic vs. maternal control , 2015, Cell adhesion & migration.
[8] J. James,et al. Differentiation of first trimester cytotrophoblast to extravillous trophoblast involves an epithelial-mesenchymal transition. , 2015, Placenta.
[9] B. Stranger,et al. Human HLA-G+ extravillous trophoblasts: Immune-activating cells that interact with decidual leukocytes , 2015, Proceedings of the National Academy of Sciences.
[10] W. Robinson,et al. ADAM12-directed ectodomain shedding of E-cadherin potentiates trophoblast fusion , 2015, Cell Death and Differentiation.
[11] A. Beristain,et al. The Elsevier Trophoblast Research Award Lecture: Importance of metzincin proteases in trophoblast biology and placental development: a focus on ADAM12. , 2015, Placenta.
[12] Miles A. Miller,et al. ADAM8 as a drug target in Pancreatic Cancer , 2015, Nature Communications.
[13] G. Sonenshein,et al. N-Glycosylation Regulates ADAM8 Processing and Activation* , 2014, The Journal of Biological Chemistry.
[14] C. Fiala,et al. Notch-dependent RBPJκ inhibits proliferation of human cytotrophoblasts and their differentiation into extravillous trophoblasts. , 2014, Molecular human reproduction.
[15] V. Fock,et al. Extravillous Trophoblast-Associated ADAM12 Exerts Pro-Invasive Properties, Including Induction of Integrin Beta 1-Mediated Cellular Spreading1 , 2014, Biology of reproduction.
[16] M. Pujana,et al. PKA signaling drives mammary tumorigenesis through Src , 2014, Oncogene.
[17] Q. Wang,et al. Extracellular calumenin suppresses ERK1/2 signaling and cell migration by protecting fibulin-1 from MMP-13-mediated proteolysis , 2014, Oncogene.
[18] K. Irvine,et al. A disintegrin and metalloproteinase 12 (ADAM12) localizes to invasive trophoblast, promotes cell invasion and directs column outgrowth in early placental development. , 2014, Molecular human reproduction.
[19] C. Fiala,et al. Wnt-dependent T-cell factor-4 controls human etravillous trophoblast motility. , 2014, Endocrinology.
[20] M. Duffy,et al. ADAM8 expression in invasive breast cancer promotes tumor dissemination and metastasis , 2013, EMBO molecular medicine.
[21] S. Higashiyama,et al. Notch increases the shedding of HB-EGF by ADAM12 to potentiate invadopodia formation in hypoxia , 2013, The Journal of cell biology.
[22] P. Saftig,et al. Ectodomain shedding and ADAMs in development , 2012, Development.
[23] B. Wehrle-Haller. Assembly and disassembly of cell matrix adhesions. , 2012, Current opinion in cell biology.
[24] J. Flanagan,et al. RNAscope: a novel in situ RNA analysis platform for formalin-fixed, paraffin-embedded tissues. , 2012, The Journal of molecular diagnostics : JMD.
[25] K. Naruse,et al. Hypoxia inhibits invasion of extravillous trophoblast cells through reduction of matrix metalloproteinase (MMP)-2 activation in the early first trimester of human pregnancy. , 2011, Placenta.
[26] R. Pijnenborg,et al. Deep trophoblast invasion and spiral artery remodelling in the placental bed of the lowland gorilla. , 2011, Placenta.
[27] R. Pijnenborg,et al. Deep trophoblast invasion and spiral artery remodelling in the placental bed of the chimpanzee. , 2011, Placenta.
[28] B. Huppertz. Trophoblast differentiation, fetal growth restriction and preeclampsia. , 2011, Pregnancy hypertension.
[29] P. Zigrino,et al. The Disintegrin-like and Cysteine-rich domains of ADAM-9 Mediate Interactions between Melanoma Cells and Fibroblasts* , 2010, The Journal of Biological Chemistry.
[30] G. Weskamp,et al. ADAM8 is a negative regulator of retinal neovascularization and of the growth of heterotopically injected tumor cells in mice , 2010, Journal of Molecular Medicine.
[31] P. Saftig,et al. The "a disintegrin and metalloprotease" (ADAM) family of sheddases: physiological and cellular functions. , 2009, Seminars in cell & developmental biology.
[32] E. Danen,et al. Integrin switching modulates adhesion dynamics and cell migration , 2009, Cell adhesion & migration.
[33] O. Wagner,et al. Identification of novel trophoblast invasion-related genes: heme oxygenase-1 controls motility via peroxisome proliferator-activated receptor gamma. , 2009, Endocrinology.
[34] D. Lauffenburger,et al. Migration of tumor cells in 3D matrices is governed by matrix stiffness along with cell-matrix adhesion and proteolysis. , 2006, Proceedings of the National Academy of Sciences of the United States of America.
[35] M. Schachner,et al. Ectodomain Shedding of the Neural Recognition Molecule CHL1 by the Metalloprotease-disintegrin ADAM8 Promotes Neurite Outgrowth and Suppresses Neuronal Cell Death* , 2004, Journal of Biological Chemistry.
[36] G. Weskamp,et al. Distinct roles for ADAM10 and ADAM17 in ectodomain shedding of six EGFR ligands , 2004, The Journal of cell biology.
[37] R. Maciewicz,et al. Integrin α5β1 and ADAM-17 Interact in Vitro and Co-localize in Migrating HeLa Cells* , 2004, Journal of Biological Chemistry.
[38] Y. Akimoto,et al. The role of α5β1‐integrin in the IGF‐I‐induced migration of extravillous trophoblast cells during the process of implantation , 2004 .
[39] L. Karlsson,et al. Catalytic Activity of ADAM8, ADAM15, and MDC-L (ADAM28) on Synthetic Peptide Substrates and in Ectodomain Cleavage of CD23* , 2003, Journal of Biological Chemistry.
[40] P. Lala,et al. Insulin-Like Growth Factor-Binding Protein 1 Stimulates Human Trophoblast Migration by Signaling through α5β1 Integrin via Mitogen-Activated Protein Kinase Pathway1 , 2001 .
[41] P. Lala,et al. Insulin-like growth factor-binding protein 1 stimulates human trophoblast migration by signaling through alpha 5 beta 1 integrin via mitogen-activated protein Kinase pathway. , 2001, The Journal of clinical endocrinology and metabolism.
[42] E. Dejana,et al. Human cytotrophoblasts adopt a vascular phenotype as they differentiate. A strategy for successful endovascular invasion? , 1997, The Journal of clinical investigation.
[43] Y. Takada,et al. A point mutation of integrin beta 1 subunit blocks binding of alpha 5 beta 1 to fibronectin and invasin but not recruitment to adhesion plaques , 1992, The Journal of cell biology.