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Mitotic activation of protein-tyrosine phosphatase alpha and regulation of its Src-mediated transforming activity by its sites of protein kinase C phosphorylation.

Zheng X.M., Resnick R.J., Shalloway D.

J. Biol. Chem. 277:21922-21929(2002) GeneRIF 19262 · Mapped (3)
Mitotic activation of protein-tyrosine phosphatase alpha and regulation of its Src-mediated transforming activity by its sites of protein kinase C phosphorylation GeneRIF 19262

Redox-regulated rotational coupling of receptor protein-tyrosine phosphatase alpha dimers.

van der Wijk T., Blanchetot C., Overvoorde J., den Hertog J.

J. Biol. Chem. 278:13968-13974(2003) GeneRIF 19262 · Mapped (9)
RPTPs have the capacity for inside-out signaling GeneRIF 19262

Protein kinase C delta induces Src kinase activity via activation of the protein tyrosine phosphatase PTP alpha.

Brandt D.T., Goerke A., Heuer M., Gimona M., Leitges M., Kremmer E., Lammers R., Haller H., Mischak H.

J. Biol. Chem. 278:34073-34078(2003) GeneRIF 19262 · Mapped (17)
protein tyrosine phosphatase PTP alpha has a role in induction of src kinase via protein kinase C GeneRIF 19262

Receptor protein tyrosine phosphatase alpha is essential for hippocampal neuronal migration and long-term potentiation.

Petrone A., Battaglia F., Wang C., Dusa A., Su J., Zagzag D., Bianchi R., Casaccia-Bonnefil P., Arancio O., Sap J.

EMBO J. 22:4121-4131(2003) GeneRIF 19262 MGI 97808 · Mapped (33)
RPTRalpha is essential for hippocampal neuronal migration and long-term potentiation. GeneRIF 19262

Protein tyrosine phosphatase alpha (PTP alpha) knockout mice show deficits in Morris water maze learning, decreased locomotor activity, and decreases in anxiety.

Skelton M.R., Ponniah S., Wang D.Z., Doetschman T., Vorhees C.V., Pallen C.J.

Brain Res. 984:1-10(2003) GeneRIF 19262 MGI 97808 · Mapped (3)
PTPalpha knockout mice show decreased anxiety without an increase in head dips and stretch-attend movements; during Morris water maze learning PTPalpha-/- mice have increased latencies to reach the goal but no memory deficit on probe trials. GeneRIF 19262

RPTPalpha is essential for NCAM-mediated p59fyn activation and neurite elongation.

Bodrikov V., Leshchyns'ka I., Sytnyk V., Overvoorde J., den Hertog J., Schachner M.

J. Cell Biol. 168:127-139(2005) GeneRIF 19262 · Mapped (17)
Data show that the NCAM140 isoform directly interacts with the intracellular domain of the receptor-like protein tyrosine phosphatase RPTPalpha a known activator of p59fyn GeneRIF 19262

Tyrosine phosphatases epsilon and alpha perform specific and overlapping functions in regulation of voltage-gated potassium channels in Schwann cells.

Tiran Z., Peretz A., Sines T., Shinder V., Sap J., Attali B., Elson A.

Mol. Biol. Cell 17:4330-4342(2006) GeneRIF 19262 MGI 97808 · Mapped (7)
We conclude that PTPepsilon and PTPalpha differ significantly in their regulation of Kv channels and Src in the system examined and that similarity between PTPs does not necessarily result in full functional redundancy in vivo. GeneRIF 19262

Reduced NMDA receptor tyrosine phosphorylation in PTPalpha-deficient mouse synaptosomes is accompanied by inhibition of four src family kinases and Pyk2: an upstream role for PTPalpha in NMDA receptor regulation.

Le H.T., Maksumova L., Wang J., Pallen C.J.

J. Neurochem. 98:1798-1809(2006) GeneRIF 19262 · Mapped (12)
Defective NMDAR activity in protein tyrosine phosphatase alpha(PTPalpha) deficiency may be linked to loss of PTPalpha as upstream regulator of proline-rich tyrosine kinase 2. GeneRIF 19262

Reversible oxidation of the membrane distal domain of receptor PTPalpha is mediated by a cyclic sulfenamide.

Yang J., Groen A., Lemeer S., Jans A., Slijper M., Roe S.M., den Hertog J., Barford D.

Biochemistry 46:709-719(2007) GeneRIF 19262 · Mapped (3)
Exposure of RPTPalpha D2 to oxidants promotes formation of a cyclic sulfenamide species a reversibly oxidized state of Cys723 accompanied by conformational changes of the D2 catalytic site. GeneRIF 19262

Leukocyte antigen-related deficiency enhances insulin-like growth factor-1 signaling in vascular smooth muscle cells and promotes neointima formation in response to vascular injury.

Niu X.L., Li J., Hakim Z.S., Rojas M., Runge M.S., Madamanchi N.R.

J. Biol. Chem. 282:19808-19819(2007) GeneRIF 19262 · Mapped (15)
LAR regulates IGF-1R signaling in vascular smooth muscle cells GeneRIF 19262

Differential function of PTPalpha and PTPalpha Y789F in T cells and regulation of PTPalpha phosphorylation at Tyr-789 by CD45.

Maksumova L., Wang Y., Wong N.K., Le H.T., Pallen C.J., Johnson P.

J. Biol. Chem. 282:20925-20932(2007) GeneRIF 19262 · Mapped (10)
PTPalpha and PTPalpha-Y789F have distinct activities in T cells and CD45 is a regulator of PTPalpha phosphorylation at tyrosine 789 in T cells GeneRIF 19262

RPTPalpha is required for rigidity-dependent inhibition of extension and differentiation of hippocampal neurons.

Kostic A., Sap J., Sheetz M.P.

J. Cell. Sci. 120:3895-3904(2007) GeneRIF 19262 MGI 97808 · Mapped (3)
Data show that RPTPalpha is required for rigidity-dependent reinforcement of fibronectin (FN)-cytoskeleton bonds and the rigidity response in hippocampal neuron growth cones. GeneRIF 19262

Neural recognition molecules CHL1 and NB-3 regulate apical dendrite orientation in the neocortex via PTP alpha.

Ye H., Tan Y.L., Ponniah S., Takeda Y., Wang S.Q., Schachner M., Watanabe K., Pallen C.J., Xiao Z.C.

EMBO J. 27:188-200(2008) GeneRIF 19262 MGI 97808 MINT MINT-129698 MINT MINT-129698 MINT MINT-129698 MINT MINT-129698 · Mapped (35)
MINT-6439905. Chl1 (uniprotkb:P70232) physically interacts (MI:0915) with Ptpa (uniprotkb:P18052) by anti tag coimmunoprecipitation (MI:0007). From mint MINT MINT-129698 MINT-6439918. Ptpa (uniprotkb:P18052) physically interacts (MI:0915) with Chl1 (uniprotkb:P70232) by anti tag coimmunoprecipitation (MI:0007). From mint MINT MINT-129698 MINT-6439931. Ptpa (uniprotkb:P18052) physically interacts (MI:0915) with Chl1 (uniprotkb:P70232) by anti bait coimmunoprecipitation (MI:0006). From mint MINT MINT-129698 MINT-6439945. Ptpa (uniprotkb:P18052) and Chl1 (uniprotkb:P70232) colocalize (MI:0403) by fluorescence microscopy (MI:0416). From mint MINT MINT-129698 Mediates close homolog of L1 (CHL1) and contactin-6 (NB-3)-regulated apical dendrite projection in the developing caudal cortex. GeneRIF 19262

Novel mechanism for suppression of hyperpolarization-activated cyclic nucleotide-gated pacemaker channels by receptor-like tyrosine phosphatase-alpha.

Huang J., Huang A., Zhang Q., Lin Y.C., Yu H.G.

J. Biol. Chem. 283:29912-29919(2008) GeneRIF 19262 · Mapped (11)
RPTPalpha plays a critical role in HCN channel function via tyrosine dephosphorylation GeneRIF 19262

NCAM induces CaMKIIalpha-mediated RPTPalpha phosphorylation to enhance its catalytic activity and neurite outgrowth.

Bodrikov V., Sytnyk V., Leshchyns'ka I., den Hertog J., Schachner M.

J. Cell Biol. 182:1185-1200(2008) GeneRIF 19262 · Mapped (19)
Data show that cell surface clustering of neural cell adhesion molecule (NCAM) is coupled to increased serine phosphorylation and RPTPalpha activity and results in the activation of NCAM-associated calmodulin-dependent protein kinase IIalpha. GeneRIF 19262

Activation of c-Src and Fyn kinases by protein-tyrosine phosphatase RPTPalpha is substrate-specific and compatible with lipid raft localization.

Vacaresse N., Moller B., Danielsen E.M., Okada M., Sap J.

J. Biol. Chem. 283:35815-35824(2008) GeneRIF 19262 · Mapped (4)
Activation of c-Src and Fyn kinases by protein-tyrosine phosphatase RPTPalpha is substrate-specific and compatible with lipid raft localization. GeneRIF 19262

Protein tyrosine phosphatase-alpha complexes with the IGF-I receptor and undergoes IGF-I-stimulated tyrosine phosphorylation that mediates cell migration.

Chen S.C., Khanna R.S., Bessette D.C., Samayawardhena L.A., Pallen C.J.

Am. J. Physiol., Cell Physiol. 297:C133-9(2009) GeneRIF 19262 MGI 97808 · Mapped (21)
Protein tyrosine phosphatase-alpha complexes with the IGF-I receptor and undergoes IGF-I-stimulated tyrosine phosphorylation that mediates cell migration. GeneRIF 19262

Protein-tyrosine phosphatase-alpha and Src functionally link focal adhesions to the endoplasmic reticulum to mediate interleukin-1-induced Ca2+ signaling.

Wang Q., Rajshankar D., Branch D.R., Siminovitch K.A., Herrera Abreu M.T., Downey G.P., McCulloch C.A.

J. Biol. Chem. 284:20763-20772(2009) GeneRIF 19262 · Mapped (15)
PTPalpha acts as an adaptor to mediate functional links between focal adhesions and the endoplasmic reticulum that enable IL-1-induced Ca2+ signaling. GeneRIF 19262

Serine dephosphorylation of receptor protein tyrosine phosphatase alpha in mitosis induces Src binding and activation.

Vacaru A.M., den Hertog J.

Mol. Cell. Biol. 30:2850-2861(2010) GeneRIF 19262 MGI 97808 · Mapped (7)
A new model for mitotic activation of Src in which PP2A-mediated dephosphorylation of RPTPalpha pSer204 facilitates Src binding is proposed. GeneRIF 19262

Importance of protein-tyrosine phosphatase-alpha catalytic domains for interactions with SHP-2 and interleukin-1-induced matrix metalloproteinase-3 expression.

Wang Q., Rajshankar D., Laschinger C., Talior-Volodarsky I., Wang Y., Downey G.P., McCulloch C.A.

J. Biol. Chem. 285:22308-22317(2010) GeneRIF 19262 · Mapped (28)
IL-1-induced signaling through focal adhesions leading to MMP3 release and interactions between SHP-2 and PTPalpha are dependent on the integrity of the catalytic domains of PTPalpha. GeneRIF 19262

Consequences of increased CD45RA and RC isoforms for TCR signaling and peripheral T cell deficiency resulting from heterogeneous nuclear ribonucleoprotein L-like mutation.

Wu Z., Yates A.L., Hoyne G.F., Goodnow C.C.

J. Immunol. 185:231-238(2010) GeneRIF 19262 · Mapped (17)
Expression of CD45RA and -RC isoforms is increased 20- to 200-fold on T cells from mice with a loss-of-function mutation in RNA-binding protein heterogeneous nuclear ribonucleoprotein L-like although total CD45 expression is unaltered. GeneRIF 19262

Extracellular domain dependence of PTPalpha transforming activity.

Tremper-Wells B., Resnick R.J., Zheng X., Holsinger L.J., Shalloway D.

Genes Cells 15:711-724(2010) GeneRIF 19262 MGI 97808 · Mapped (3)
The results suggest that transformation by PTPalpha involves at least one function other than or in addition to its activation of Src and that this depends on PTPalpha's extracellular domain. GeneRIF 19262

PKC and PTPalpha participate in Src activation by 1alpha,25OH2 vitamin D3 in C2C12 skeletal muscle cells.

Buitrago C., Costabel M., Boland R.

Mol. Cell. Endocrinol. 339:81-89(2011) GeneRIF 19262 MGI 97808 · Mapped (6)
protein kinase C and protein tyrosine phosphatase alpha participate in Src activation by 1alpha 25OH2 vitamin D3 in C2C12 skeletal muscle cells GeneRIF 19262

Receptor-like protein-tyrosine phosphatase alpha enhances cell surface expression of neural adhesion molecule NB-3.

Ye H., Zhao T., Tan Y.L., Liu J., Pallen C.J., Xiao Z.C.

J. Biol. Chem. 286:26071-26080(2011) GeneRIF 19262 · Mapped (9)
the PTPalpha-mediated increase of NB-3 level at the cell surface represents a novel function of PTPalpha in NB-3 signaling in neural development GeneRIF 19262

Protein tyrosine phosphatase alpha phosphotyrosyl-789 binds BCAR3 to position Cas for activation at integrin-mediated focal adhesions.

Sun G., Cheng S.Y., Chen M., Lim C.J., Pallen C.J.

Mol. Cell. Biol. 32:3776-3789(2012) GeneRIF 19262 MGI 97808 · Mapped (10)
study described a molecular complex of PTPalpha-BCAR3-Cas-Src; this complex forms in response to PTPalpha Tyr789 phosphorylation and mediates Cas localization to focal adhesions and Cas downstream signaling to promote cell migration GeneRIF 19262

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