Protein tyrosine phosphatases and signalling.
暂无分享,去创建一个
[1] E. Kremmer,et al. Protein Kinase Cδ Induces Src Kinase Activity via Activation of the Protein Tyrosine Phosphatase PTPα* , 2003, Journal of Biological Chemistry.
[2] R. Mooney,et al. The protein tyrosine phosphatase LAR has a major impact on insulin receptor dephosphorylation. , 1997, Biochemical and biophysical research communications.
[3] E. Fauman,et al. Structure and function of the protein tyrosine phosphatases. , 1996, Trends in biochemical sciences.
[4] E. Asante-Appiah,et al. Protein tyrosine phosphatases: the quest for negative regulators of insulin action. , 2003, American journal of physiology. Endocrinology and metabolism.
[5] J. Lilien,et al. The Nonreceptor Protein Tyrosine Phosphatase PTP1B Binds to the Cytoplasmic Domain of N-Cadherin and Regulates the Cadherin–Actin Linkage , 1998, The Journal of cell biology.
[6] J. Olefsky,et al. Protein Tyrosine Phosphatase 1B Interacts With the Activated Insulin Receptor , 1996, Diabetes.
[7] Kenneth M. Yamada,et al. Tumor suppressor PTEN: modulator of cell signaling, growth, migration and apoptosis. , 2001, Journal of cell science.
[8] M. Noda,et al. Pleiotrophin signals increased tyrosine phosphorylation of beta beta-catenin through inactivation of the intrinsic catalytic activity of the receptor-type protein tyrosine phosphatase beta/zeta. , 2000, Proceedings of the National Academy of Sciences of the United States of America.
[9] D. Rimm,et al. Receptor protein tyrosine phosphatase PTPmu associates with cadherins and catenins in vivo , 1995, The Journal of cell biology.
[10] D. Barford,et al. Molecular basis for the dephosphorylation of the activation segment of the insulin receptor by protein tyrosine phosphatase 1B. , 2000, Molecular cell.
[11] G. Ramponi,et al. Structure and function of the low Mr phosphotyrosine protein phosphatases. , 1997, Biochimica et biophysica acta.
[12] U. Hellman,et al. The Protein-tyrosine Phosphatase SHP-1 Binds to and Dephosphorylates p120 Catenin* , 2000, The Journal of Biological Chemistry.
[13] H. Wu,et al. PTEN modulates cell cycle progression and cell survival by regulating phosphatidylinositol 3,4,5,-trisphosphate and Akt/protein kinase B signaling pathway. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[14] Peter J Verveer,et al. Imaging Sites of Receptor Dephosphorylation by PTP1B on the Surface of the Endoplasmic Reticulum , 2002, Science.
[15] B. Goldstein,et al. Insulin Receptor Signaling Is Augmented by Antisense Inhibition of the Protein Tyrosine Phosphatase LAR (*) , 1995, The Journal of Biological Chemistry.
[16] M. Quon,et al. Overexpression of protein tyrosine phosphatase-alpha (PTP-alpha) but not PTP-kappa inhibits translocation of GLUT4 in rat adipose cells. , 1999, Biochemical and biophysical research communications.
[17] E. Van Obberghen,et al. Interaction of SH2-containing protein tyrosine phosphatase 2 with the insulin receptor and the insulin-like growth factor-I receptor: studies of the domains involved using the yeast two-hybrid system. , 1996, Endocrinology.
[18] J. Cloutier,et al. Direct Association of Protein-tyrosine Phosphatase PTP-PEST with Paxillin* , 1998, The Journal of Biological Chemistry.
[19] J. Schwarzbauer. Cell migration: May the force be with you , 1997, Current Biology.
[20] M. Schwartz. Integrin signaling revisited. , 2001, Trends in cell biology.
[21] Hui Chen,et al. Overexpression of Protein Tyrosine Phosphatase-α (PTP-α) but not PTP-κ Inhibits Translocation of GLUT4 in Rat Adipose Cells , 1999 .
[22] M. Kasuga,et al. Integrin-mediated Tyrosine Phosphorylation of SHPS-1 and Its Association with SHP-2 , 1998, The Journal of Biological Chemistry.
[23] N. Seidah,et al. Increased proteolytic processing of protein tyrosine phosphatase mu in confluent vascular endothelial cells: the role of PC5, a member of the subtilisin family. , 1996, Biochemistry.
[24] L. Zhu,et al. Insulin-stimulated Hydrogen Peroxide Reversibly Inhibits Protein-tyrosine Phosphatase 1B in Vivo and Enhances the Early Insulin Action Cascade* , 2001, The Journal of Biological Chemistry.
[25] S. Rhee,et al. Reversible Inactivation of Protein-tyrosine Phosphatase 1B in A431 Cells Stimulated with Epidermal Growth Factor* , 1998, The Journal of Biological Chemistry.
[26] M. Kasuga,et al. Roles for the protein tyrosine phosphatase SHP-2 in cytoskeletal organization, cell adhesion and cell migration revealed by overexpression of a dominant negative mutant , 2000, Oncogene.
[27] H. Saito,et al. The Laminin–Nidogen Complex is a Ligand for a Specific Splice Isoform of the Transmembrane Protein Tyrosine Phosphatase LAR , 1998, The Journal of cell biology.
[28] A. Ullrich,et al. Adapter Function of Protein-tyrosine Phosphatase 1D in Insulin Receptor/Insulin Receptor Substrate-1 Interaction (*) , 1995, The Journal of Biological Chemistry.
[29] X. Si,et al. PTPα regulates integrin-stimulated FAK autophosphorylation and cytoskeletal rearrangement in cell spreading and migration , 2003, The Journal of cell biology.
[30] M. Kasuga,et al. Roles of the Complex Formation of SHPS-1 with SHP-2 in Insulin-stimulated Mitogen-activated Protein Kinase Activation* , 1998, The Journal of Biological Chemistry.
[31] Kenneth M. Yamada,et al. Inhibition of cell migration, spreading, and focal adhesions by tumor suppressor PTEN. , 1998, Science.
[32] S. Hirohashi. Inactivation of the E-cadherin-mediated cell adhesion system in human cancers. , 1998, The American journal of pathology.
[33] E. Fauman,et al. Structure and function of theprotein tyrosine phosphatases , 1996 .
[34] J. Cloutier,et al. Inhibitory Tyrosine Protein Kinase p50 csk Is Associated with Protein-tyrosine Phosphatase PTP-PEST in Hemopoietic and Non-hemopoietic Cells* , 1997, The Journal of Biological Chemistry.
[35] A. Elson,et al. Regulation of Protein-tyrosine Phosphatases α and ε by Calpain-mediated Proteolytic Cleavage* , 2001, The Journal of Biological Chemistry.
[36] A. Reynolds,et al. Receptor Protein-tyrosine Phosphatase RPTPμ Binds to and Dephosphorylates the Catenin p120 ctn * , 2000, The Journal of Biological Chemistry.
[37] A. Reynolds,et al. Protecting your tail: regulation of cadherin degradation by p120-catenin. , 2004, Current opinion in cell biology.
[38] J. Parsons,et al. Focal adhesion kinase: the first ten years , 2003, Journal of Cell Science.
[39] C. Heldin,et al. Dimerization of cell surface receptors in signal transduction , 1995, Cell.
[40] D. Shalloway,et al. A phosphotyrosine displacement mechanism for activation of Src by PTPα , 2000, The EMBO journal.
[41] B. Goldstein,et al. The Transmembrane Protein-tyrosine Phosphatase LAR Modulates Signaling by Multiple Receptor Tyrosine Kinases (*) , 1996, The Journal of Biological Chemistry.
[42] M. Noda,et al. Pleiotrophin signals increased tyrosine phosphorylation of β-catenin through inactivation of the intrinsic catalytic activity of the receptor-type protein tyrosine phosphatase β/ζ , 2000 .
[43] P. Schwartzberg,et al. The many faces of Src: multiple functions of a prototypical tyrosine kinase , 1998, Oncogene.
[44] B. Neel,et al. The nontransmembrane tyrosine phosphatase PTP-1B localizes to the endoplasmic reticulum via its 35 amino acid C-terminal sequence , 1992, Cell.
[45] A. Veillette,et al. PTP‐PEST, a scaffold protein tyrosine phosphatase, negatively regulates lymphocyte activation by targeting a unique set of substrates , 2001, The EMBO journal.
[46] J. Chernoff,et al. Protein-Tyrosine Phosphatase 1B Complexes with the Insulin Receptor in Vivo and Is Tyrosine-phosphorylated in the Presence of Insulin* , 1997, The Journal of Biological Chemistry.
[47] Qiang Yu,et al. Overexpression of the transmembrane tyrosine phosphatase LAR activates the caspase pathway and induces apoptosis , 1998, Current Biology.
[48] Susann M Brady-Kalnay,et al. Receptor protein tyrosine phosphatases regulate neural development and axon guidance. , 2004, Developmental biology.
[49] R. Hooft van Huijsduijnen,et al. Pulling strings below the surface: hormone receptor signaling through inhibition of protein tyrosine phosphatases. , 2001, Endocrine.
[50] J. Livingston,et al. Insulin Signaling in Mice Expressing Reduced Levels of Syp* , 1996, The Journal of Biological Chemistry.
[51] Shile Huang,et al. Role of PTP-1B in aortic smooth muscle cell motility and tyrosine phosphorylation of focal adhesion proteins. , 1999, American journal of physiology. Heart and circulatory physiology.
[52] J. Sap,et al. Association between receptor protein-tyrosine phosphatase RPTPalpha and the Grb2 adaptor. Dual Src homology (SH) 2/SH3 domain requirement and functional consequences. , 1996, The Journal of biological chemistry.
[53] J. Condeelis,et al. Protein Tyrosine Phosphatase φ Regulates Paxillin Tyrosine Phosphorylation and Mediates Colony-Stimulating Factor 1-Induced Morphological Changes in Macrophages , 2001, Molecular and Cellular Biology.
[54] N. Tonks,et al. Association of PTP-PEST with the SH3 domain of p130cas; a novel mechanism of protein tyrosine phosphatase substrate recognition , 1997, Oncogene.
[55] Ó. Escribano,et al. Insulin receptor substrate‐4 signaling in quiescent rat hepatocytes and in regenerating rat liver , 2003, Hepatology.
[56] D. Barford,et al. The Crystal Structure of Domain 1 of Receptor Protein-tyrosine Phosphatase μ* , 1997, The Journal of Biological Chemistry.
[57] Kenneth M. Yamada,et al. PTEN Interactions with Focal Adhesion Kinase and Suppression of the Extracellular Matrix-dependent Phosphatidylinositol 3-Kinase/Akt Cell Survival Pathway* , 1999, The Journal of Biological Chemistry.
[58] T. Finkel,et al. Oxidants painting the cysteine chapel: redox regulation of PTPs. , 2002, Developmental cell.
[59] W. Halfter,et al. Heparan Sulfate Proteoglycans Are Ligands for Receptor Protein Tyrosine Phosphatase σ , 2002, Molecular and Cellular Biology.
[60] L. Reichardt,et al. Association between a transmembrane protein tyrosine phosphatase and the cadherin-catenin complex , 1996, The Journal of cell biology.
[61] E. Kremmer,et al. Protein kinase C delta induces Src kinase activity via activation of the protein tyrosine phosphatase PTP alpha. , 2003, The Journal of biological chemistry.
[62] J. Lilien,et al. Impaired Integrin-mediated Adhesion and Signaling in Fibroblasts Expressing a Dominant-negative Mutant PTP1B , 1998, The Journal of cell biology.
[63] M. Kasuga,et al. Role of SH-PTP2, a protein-tyrosine phosphatase with Src homology 2 domains, in insulin-stimulated Ras activation. , 1994, Molecular and cellular biology.
[64] R. Wubbolts,et al. Cell surface expression of receptor protein tyrosine phosphatase RPTP mu is regulated by cell-cell contact , 1995, The Journal of cell biology.
[65] G. O'Neill,et al. Integrin signalling: a new Cas(t) of characters enters the stage. , 2000, Trends in cell biology.
[66] C. Serra-Pages,et al. Liprins, a Family of LAR Transmembrane Protein-tyrosine Phosphatase-interacting Proteins* , 1998, The Journal of Biological Chemistry.
[67] A. Ullrich,et al. Association of Human Protein-tyrosine Phosphatase κ with Members of the Armadillo Family* , 1996, The Journal of Biological Chemistry.
[68] D. Adler,et al. Expression of the receptor‐linked protein tyrosine phosphatase LAR: proteolytic cleavage and shedding of the CAM‐like extracellular region. , 1992, The EMBO journal.
[69] A. Ullrich,et al. The transmembrane protein tyrosine phosphatase α dephosphorylates the insulin receptor in intact cells , 1997, FEBS letters.
[70] J. Daniel,et al. Tyrosine phosphorylation and cadherin/catenin function , 1997, BioEssays : news and reviews in molecular, cellular and developmental biology.
[71] R. Bernabeu,et al. Leukocyte Antigen-Related Protein Tyrosine Phosphatase Receptor: A Small Ectodomain Isoform Functions as a Homophilic Ligand and Promotes Neurite Outgrowth , 2003, The Journal of Neuroscience.
[72] Sheila M. Thomas,et al. Regulation of Early Events in Integrin Signaling by Protein Tyrosine Phosphatase SHP-2 , 1999, Molecular and Cellular Biology.
[73] Qiang Yu,et al. Transmembrane tyrosine phosphatase LAR induces apoptosis by dephosphorylating and destabilizing p130Cas , 1999, Genes to cells : devoted to molecular & cellular mechanisms.
[74] J. Brugge,et al. Sensing the environment: a historical perspective on integrin signal transduction , 2002, Nature Cell Biology.
[75] G. J. Sale,et al. Use of an Antisense Strategy to Dissect the Signaling Role of Protein-tyrosine Phosphatase α* , 1999, The Journal of Biological Chemistry.
[76] G. Feng. Shp-2 tyrosine phosphatase: signaling one cell or many. , 1999, Experimental cell research.
[77] B. Jallal,et al. The transmembrane receptor protein tyrosine phosphatase DEP1 interacts with p120ctn , 2002, Oncogene.
[78] Karl G. Johnson,et al. Receptor protein tyrosine phosphatases in nervous system development. , 2003, Physiological reviews.
[79] B. Goldstein,et al. Functional Association between the Insulin Receptor and the Transmembrane Protein-tyrosine Phosphatase LAR in Intact Cells* , 1997, The Journal of Biological Chemistry.
[80] J. Noel,et al. Dimerization-induced inhibition of receptor protein tyrosine phosphatase function through an inhibitory wedge. , 1998, Science.
[81] M. Tremblay,et al. Protein Tyrosine Phosphatase-PEST Regulates Focal Adhesion Disassembly, Migration, and Cytokinesis in Fibroblasts , 1999, The Journal of cell biology.
[82] E. Tekle,et al. Epidermal Growth Factor (EGF)-induced Generation of Hydrogen Peroxide , 1997, The Journal of Biological Chemistry.
[83] D. Rotin,et al. The second catalytic domain of protein tyrosine phosphatase delta (PTP delta) binds to and inhibits the first catalytic domain of PTP sigma. , 1998, Molecular and cellular biology.
[84] G. Shulman,et al. Transgenic mice deficient in the LAR protein-tyrosine phosphatase exhibit profound defects in glucose homeostasis. , 1998, Diabetes.
[85] A. Debant,et al. The multidomain protein Trio binds the LAR transmembrane tyrosine phosphatase, contains a protein kinase domain, and has separate rac-specific and rho-specific guanine nucleotide exchange factor domains. , 1996, Proceedings of the National Academy of Sciences of the United States of America.
[86] Tony Pawson,et al. Specificity in Signal Transduction From Phosphotyrosine-SH2 Domain Interactions to Complex Cellular Systems , 2004, Cell.
[87] Qiang Yu,et al. Anchorage‐independent phosphorylation of p130Cas protects lung adenocarcinoma cells from anoikis , 2002, Journal of cellular biochemistry.
[88] A. Ullrich,et al. Phosphorylation and Free Pool of β-Catenin Are Regulated by Tyrosine Kinases and Tyrosine Phosphatases during Epithelial Cell Migration* , 1999, The Journal of Biological Chemistry.
[89] T. Sjöblom,et al. Preferential oxidation of the second phosphatase domain of receptor-like PTP-α revealed by an antibody against oxidized protein tyrosine phosphatases , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[90] J. Lilien,et al. PTP1B regulates neurite extension mediated by cell‐cell and cell‐matrix adhesion molecules , 2001, Journal of neuroscience research.
[91] N. Tonks,et al. PTP‐PEST: a protein tyrosine phosphatase regulated by serine phosphorylation. , 1994, The EMBO journal.
[92] M. Tremblay,et al. Coupling of the murine protein tyrosine phosphatase PEST to the epidermal growth factor (EGF) receptor through a Src homology 3 (SH3) domain-mediated association with Grb2 , 1997, Oncogene.
[93] D. Rimm,et al. Dynamic Interaction of PTPμ with Multiple Cadherins In Vivo , 1998, The Journal of cell biology.
[94] T Pawson,et al. SH2 domains, interaction modules and cellular wiring. , 2001, Trends in cell biology.
[95] S. Arkinstall,et al. Identification of Tyrosine Phosphatases That Dephosphorylate the Insulin Receptor , 2000, The Journal of Biological Chemistry.
[96] W. Halfter,et al. Heparan sulfate proteoglycans are ligands for receptor protein tyrosine phosphatase sigma. , 2002, Molecular and cellular biology.
[97] M. Tremblay,et al. Coordinated action of protein tyrosine phosphatases in insulin signal transduction. , 2002, European journal of biochemistry.
[98] J. Frangioni,et al. Calpain‐catalyzed cleavage and subcellular relocation of protein phosphotyrosine phosphatase 1B (PTP‐1B) in human platelets. , 1993, The EMBO journal.
[99] G. Lienhard,et al. Association of insulin receptor substrate 3 with SH2 domain-containing proteins in rat adipocytes. , 1998, Biochemical and biophysical research communications.
[100] Z. Zhao,et al. Concerted Activity of Tyrosine Phosphatase SHP-2 and Focal Adhesion Kinase in Regulation of Cell Motility , 1999, Molecular and Cellular Biology.
[101] N. Tonks,et al. Regulation of Insulin Signaling through Reversible Oxidation of the Protein-tyrosine Phosphatases TC45 and PTP1B* , 2004, Journal of Biological Chemistry.
[102] N. O’Rourke,et al. A novel protein-tyrosine phosphatase related to the homotypically adhering kappa and mu receptors. , 1997, The Journal of biological chemistry.
[103] J. Clausen,et al. Comparative study of protein tyrosine phosphatase-epsilon isoforms: membrane localization confers specificity in cellular signalling. , 2001, The Biochemical journal.
[104] J. Sap,et al. Receptor protein tyrosine phosphatase α activates Src-family kinases and controls integrin-mediated responses in fibroblasts , 1999, Current Biology.
[105] F. Liu,et al. Protein tyrosine phosphatase 1B negatively regulates integrin signaling , 1998, Current Biology.
[106] Qiang Yu,et al. Cleavage of p130Cas in anoikis , 2004, Journal of cellular biochemistry.
[107] G. Feng,et al. Protein-tyrosine Phosphatase Shp-2 Regulates Cell Spreading, Migration, and Focal Adhesion* , 1998, The Journal of Biological Chemistry.
[108] A. Debant,et al. The LAR transmembrane protein tyrosine phosphatase and a coiled‐coil LAR‐interacting protein co‐localize at focal adhesions. , 1995, The EMBO journal.
[109] B. Kennedy,et al. Attenuation of leptin action and regulation of obesity by protein tyrosine phosphatase 1B. , 2002, Developmental cell.
[110] B. Kennedy,et al. Increased insulin sensitivity and obesity resistance in mice lacking the protein tyrosine phosphatase-1B gene. , 1999, Science.
[111] J. Lilien,et al. Regulated binding of PTP1B-like phosphatase to N-cadherin: control of cadherin-mediated adhesion by dephosphorylation of beta-catenin , 1996, The Journal of cell biology.
[112] C. Serra-Pages,et al. Mutational analysis of proprotein processing, subunit association, and shedding of the LAR transmembrane protein tyrosine phosphatase. , 1994, The Journal of biological chemistry.
[113] K. Morino,et al. Expression of a Dominant Negative SHP-2 in Transgenic Mice Induces Insulin Resistance* , 1999, The Journal of Biological Chemistry.
[114] J. den Hertog,et al. Identification of p130 cas as an in VivoSubstrate of Receptor Protein-tyrosine Phosphatase α* , 2000, The Journal of Biological Chemistry.
[115] A. G. de Herreros,et al. Regulation of E-cadherin/Catenin Association by Tyrosine Phosphorylation* , 1999, The Journal of Biological Chemistry.
[116] Young-Bum Kim,et al. Increased Energy Expenditure, Decreased Adiposity, and Tissue-Specific Insulin Sensitivity in Protein-Tyrosine Phosphatase 1B-Deficient Mice , 2000, Molecular and Cellular Biology.
[117] T. Hunter,et al. Tight association of GRB2 with receptor protein‐tyrosine phosphatase alpha is mediated by the SH2 and C‐terminal SH3 domains. , 1996, The EMBO journal.
[118] A. Saltiel,et al. Expression of catalytically inactive Syp phosphatase in 3T3 cells blocks stimulation of mitogen-activated protein kinase by insulin. , 1994, The Journal of biological chemistry.
[119] M. White,et al. The COOH-terminal Tyrosine Phosphorylation Sites on IRS-1 Bind SHP-2 and Negatively Regulate Insulin Signaling* , 1998, The Journal of Biological Chemistry.
[120] K. Lim,et al. Targeted disruption of the tyrosine phosphatase PTPα leads to constitutive downregulation of the kinases Src and Fyn , 1999, Current Biology.
[121] M. Takeichi,et al. Neural crest emigration from the neural tube depends on regulated cadherin expression. , 1998, Development.
[122] F. Pixley,et al. A Heteromorphic Protein-tyrosine Phosphatase, PTPφ, Is Regulated by CSF-1 in Macrophages (*) , 1995, The Journal of Biological Chemistry.
[123] T. Hunter,et al. Receptor-Like Protein Tyrosine Phosphatase α Homodimerizes on the Cell Surface , 2000, Molecular and Cellular Biology.
[124] A. Elson,et al. Regulation of protein-tyrosine phosphatases alpha and epsilon by calpain-mediated proteolytic cleavage. , 2001, The Journal of biological chemistry.
[125] J. Parsons,et al. Autophosphorylation of the focal adhesion kinase, pp125FAK, directs SH2-dependent binding of pp60src , 1994, Molecular and cellular biology.
[126] D. Wilkinson,et al. Diverse roles of eph receptors and ephrins in the regulation of cell migration and tissue assembly. , 2004, Developmental cell.
[127] B. Neel,et al. The 'Shp'ing news: SH2 domain-containing tyrosine phosphatases in cell signaling. , 2003, Trends in biochemical sciences.
[128] E. Zamir,et al. Molecular complexity and dynamics of cell-matrix adhesions. , 2001, Journal of cell science.
[129] J. den Hertog,et al. Regulation of receptor protein‐tyrosine phosphatase α by oxidative stress , 2002 .
[130] R. Mamillapalli,et al. Genetic deletion of the Pten tumor suppressor gene promotes cell motility by activation of Rac1 and Cdc42 GTPases , 2000, Current Biology.
[131] Young-Bum Kim,et al. PTP1B regulates leptin signal transduction in vivo. , 2002, Developmental cell.
[132] Kenneth M. Yamada,et al. Tumor suppressor PTEN inhibition of cell invasion, migration, and growth: differential involvement of focal adhesion kinase and p130Cas. , 1999, Cancer research.
[133] J. Peacock,et al. Protein-tyrosine Phosphatase α Regulates Src Family Kinases and Alters Cell-Substratum Adhesion* , 1998, The Journal of Biological Chemistry.
[134] M. Ozawa,et al. Tyrosine phosphorylation of p120(ctn) in v-Src transfected L cells depends on its association with E-cadherin and reduces adhesion activity. , 2001, Journal of cell science.
[135] Jill Cheng,et al. A Novel Protein-Tyrosine Phosphatase Related to the Homotypically Adhering κ and μ Receptors* , 1997, The Journal of Biological Chemistry.
[136] M. Streuli,et al. A new member of the immunoglobulin superfamily that has a cytoplasmic region homologous to the leukocyte common antigen , 1988, Journal of Experimental Medicine.
[137] Joanna M. Sasin,et al. Protein Tyrosine Phosphatases in the Human Genome , 2004, Cell.
[138] B. Neel,et al. Shp2 regulates SRC family kinase activity and Ras/Erk activation by controlling Csk recruitment. , 2004, Molecular cell.
[139] W. Moolenaar,et al. Lack of association between receptor protein tyrosine phosphatase RPTP mu and cadherins , 1996, The Journal of cell biology.
[140] A. Weiss,et al. Negative regulation of CD45 by differential homodimerization of the alternatively spliced isoforms , 2002, Nature Immunology.
[141] M. White,et al. Tyrosine Dephosphorylation and Deactivation of Insulin Receptor Substrate-1 by Protein-tyrosine Phosphatase 1B , 2000, The Journal of Biological Chemistry.
[142] J. Chernoff,et al. Down-regulation of Insulin Signaling by Protein-tyrosine Phosphatase 1B Is Mediated by an N-terminal Binding Region* , 2000, The Journal of Biological Chemistry.
[143] J. den Hertog,et al. Regulation of receptor protein-tyrosine phosphatase alpha by oxidative stress. , 2002, The EMBO journal.
[144] J. Bixby,et al. Receptor protein tyrosine phosphatases as mediators of cellular adhesion. , 2003, Frontiers in bioscience : a journal and virtual library.
[145] J. Gu,et al. PTEN gene and integrin signaling in cancer. , 1999, Journal of the National Cancer Institute.
[146] J. Noel,et al. Dimerization inhibits the activity of receptor-like protein-tyrosine phosphatase-α , 1999, Nature.
[147] B. Goldstein,et al. Suppression of insulin receptor activation by overexpression of the protein-tyrosine phosphatase LAR in hepatoma cells. , 1996, Cellular signalling.
[148] Kenneth M. Yamada,et al. Phosphatases in cell–matrix adhesion and migration , 2003, Nature Reviews Molecular Cell Biology.
[149] M. Kinch,et al. Activation of EphA2 kinase suppresses integrin function and causes focal-adhesion-kinase dephosphorylation , 2000, Nature Cell Biology.
[150] P. Lombroso,et al. Receptor and nonreceptor protein tyrosine phosphatases in the nervous system , 2003, Cellular and Molecular Life Sciences CMLS.
[151] H. Nam,et al. Crystal Structure of the Tandem Phosphatase Domains of RPTP LAR , 1999, Cell.
[152] D. Shalloway,et al. Mitotic Activation of Protein-tyrosine Phosphatase α and Regulation of Its Src-mediated Transforming Activity by Its Sites of Protein Kinase C Phosphorylation* , 2002, The Journal of Biological Chemistry.
[153] B. Kennedy,et al. Attenuation of Adhesion-dependent Signaling and Cell Spreading in Transformed Fibroblasts Lacking Protein Tyrosine Phosphatase-1B , 2001, The Journal of Biological Chemistry.
[154] B. Goldstein,et al. Increased abundance of the receptor-type protein-tyrosine phosphatase LAR accounts for the elevated insulin receptor dephosphorylating activity in adipose tissue of obese human subjects. , 1995, The Journal of clinical investigation.
[155] J. J. Wu,et al. Evidence for monomeric and dimeric forms of CD45 associated with a 30-kDa phosphorylated protein. , 1992, The Journal of biological chemistry.
[156] J. Bixby. Receptor tyrosine phosphatases in axon growth and guidance. , 2000, Neuroreport.
[157] J. Lilien,et al. Turn‐off, drop‐out: Functional state switching of cadherins , 2002, Developmental dynamics : an official publication of the American Association of Anatomists.
[158] Masahiro Watanabe,et al. Insulin Receptor Substrate-1/SHP-2 Interaction, a Phenotype-dependent Switching Machinery of Insulin-like Growth Factor-I Signaling in Vascular Smooth Muscle Cells* , 2004, Journal of Biological Chemistry.
[159] J. Lilien,et al. Continuous association of cadherin with β-catenin requires the non-receptor tyrosine-kinase Fer , 2004, Journal of Cell Science.
[160] A. Ullrich,et al. Cellular Redistribution of Protein Tyrosine Phosphatases LAR and PTPσ by Inducible Proteolytic Processing , 1997, The Journal of cell biology.
[161] Toshiyuki Fukada,et al. Reversible oxidation and inactivation of protein tyrosine phosphatases in vivo. , 2002, Molecular cell.
[162] M. Pani,et al. Overexpression of the LAR (leukocyte antigen-related) protein-tyrosine phosphatase in muscle causes insulin resistance , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[163] M. Tremblay,et al. Roles of protein tyrosine phosphatases in cell migration and adhesion. , 1999, Biochemistry and cell biology = Biochimie et biologie cellulaire.
[164] J. Grossmann,et al. Molecular mechanisms of “detachment-induced apoptosis—Anoikis” , 2002, Apoptosis.
[165] Kenneth M. Yamada,et al. Tumor Suppressor PTEN Inhibits Integrin- and Growth Factor–mediated Mitogen-activated Protein (MAP) Kinase Signaling Pathways , 1998, The Journal of cell biology.