Anti-Phosphotyrosine抗体[PY20] (ab10321)

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ab10321 被引用在 24 文献中.

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  • Böhm S  et al. Cellular functions of Ufd2 and Ufd3 in proteasomal protein degradation depend on Cdc48 binding. Mol Cell Biol 31:1528-39 (2011). PubMed: 21282470
  • Lemeer S  et al. Endogenous phosphotyrosine signaling in zebrafish embryos. Mol Cell Proteomics 6:2088-99 (2007). PubMed: 17698882
  • Huang F  et al. EGF receptor ubiquitination is not necessary for its internalization. Proc Natl Acad Sci U S A 104:16904-9 (2007). PubMed: 17940017
  • Hallett PJ  et al. Dopamine D1 activation potentiates striatal NMDA receptors by tyrosine phosphorylation-dependent subunit trafficking. J Neurosci 26:4690-700 (2006). PubMed: 16641250
  • Feng YH  et al. ATP stimulates GRK-3 phosphorylation and beta-arrestin-2-dependent internalization of P2X7 receptor. Am J Physiol Cell Physiol 288:C1342-56 (2005). PubMed: 15728711
  • Asano T  et al. Insulin receptor substrate is a mediator of phosphoinositide 3-kinase activation in quiescent pancreatic cancer cells. Cancer Res 65:9164-8 (2005). PubMed: 16230374
  • Inoue T  et al. Activation of c-Met (hepatocyte growth factor receptor) in human gastric cancer tissue. Cancer Sci 95:803-8 (2004). PubMed: 15504247
  • NagDas SK  et al. Tyrosine Phosphorylation Generates Multiple Isoforms of the Mitochondrial Capsule Protein, Phospholipid Hydroperoxide Glutathione Peroxidase (PHGPx), During Hamster Sperm Capacitation. Biol Reprod : (2004). PubMed: 15385412
  • Xu Y  et al. Beta-hydroxyisovalerylshikonin and cisplatin act synergistically to inhibit growth and to induce apoptosis of human lung cancer DMS114 cells via a tyrosine kinase-dependent pathway. Oncology 66:67-75 (2004). PubMed: 15031601
  • Rafalska I  et al. The intranuclear localization and function of YT521-B is regulated by tyrosine phosphorylation. Hum Mol Genet 13:1535-49 (2004). PubMed: 15175272
  • Peus D  et al. Antipsoriatic drug anthralin induces EGF receptor phosphorylation in keratinocytes: requirement for H(2)O(2) generation. Exp Dermatol 13:78-85 (2004). PubMed: 15009100
  • Aparicio IM  et al. Hepatocyte growth factor activates several transduction pathways in rat pancreatic acini. Biochim Biophys Acta 1643:37-46 (2003). PubMed: 14654226
  • Kawanabe Y  et al. Involvements of voltage-independent Ca2+ channels and phosphoinositide 3-kinase in endothelin-1-induced PYK2 tyrosine phosphorylation. Mol Pharmacol 63:808-13 (2003). PubMed: 12644581
  • Schade AE & Levine AD Lipid raft heterogeneity in human peripheral blood T lymphoblasts: a mechanism for regulating the initiation of TCR signal transduction. J Immunol 168:2233-9 (2002). PubMed: 11859110
  • Tang H  et al. Regulation of calcium-sensitive tyrosine kinase Pyk2 by angiotensin II in endothelial cells. Roles of Yes tyrosine kinase and tyrosine phosphatase SHP-2. J Biol Chem 275:8389-96 (2000). PubMed: 10722671
  • Wang YZ & Bonner JC Mechanism of extracellular signal-regulated kinase (ERK)-1 and ERK-2 activation by vanadium pentoxide in rat pulmonary myofibroblasts. Am J Respir Cell Mol Biol 22:590-6 (2000). PubMed: 10783131
  • Croxtall JD  et al. Glucocorticoids act within minutes to inhibit recruitment of signalling factors to activated EGF receptors through a receptor-dependent, transcription-independent mechanism. Br J Pharmacol 130:289-98 (2000). PubMed: 10807665
  • Takahashi N  et al. Vascular endothelial growth factor induces activation and subcellular translocation of focal adhesion kinase (p125FAK) in cultured rat cardiac myocytes. Circ Res 84:1194-202 (1999). PubMed: 10347094
  • Sakaguchi K  et al. Shc phosphotyrosine-binding domain dominantly interacts with epidermal growth factor receptors and mediates Ras activation in intact cells. Mol Endocrinol 12:536-43 (1998). PubMed: 9544989
  • Kishi Y  et al. High levels of actin tyrosine phosphorylation: correlation with the dormant state of Dictyostelium spores. J Cell Sci 111 ( Pt 19):2923-32 (1998). PubMed: 9730984