Anti-Clathrin抗体[X22] (ab2731)

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ab2731 被引用在 38 文献中.

  • Arden SD  et al. Loss of cargo binding in the human myosin VI deafness mutant (R1166X) leads to increased actin filament binding. Biochem J 473:3307-19 (2016). WB . PubMed: 27474411
  • Fearnley GW  et al. VEGF-A isoforms program differential VEGFR2 signal transduction, trafficking and proteolysis. Biol Open 5:571-83 (2016). PubMed: 27044325
  • Azizi PM  et al. Clathrin-dependent entry and vesicle-mediated exocytosis define insulin transcytosis across microvascular endothelial cells. Mol Biol Cell 26:740-50 (2015). ICC/IF ; Human . PubMed: 25540431
  • McCormack RM  et al. Perforin-2 is essential for intracellular defense of parenchymal cells and phagocytes against pathogenic bacteria. Elife 4:N/A (2015). WB . PubMed: 26402460
  • Gingras S  et al. SCYL2 Protects CA3 Pyramidal Neurons from Excitotoxicity during Functional Maturation of the Mouse Hippocampus. J Neurosci 35:10510-22 (2015). PubMed: 26203146
  • Salinas S  et al. Disruption of the coxsackievirus and adenovirus receptor-homodimeric interaction triggers lipid microdomain- and dynamin-dependent endocytosis and lysosomal targeting. J Biol Chem 289:680-95 (2014). Mouse . PubMed: 24273169
  • Sullivan CS  et al. The adaptor protein GULP promotes Jedi-1-mediated phagocytosis through a clathrin-dependent mechanism. Mol Biol Cell 25:1925-36 (2014). IP . PubMed: 24743597
  • Zhou GL  et al. Deficits in receptor-mediated endocytosis and recycling in cells from mice with Gpr107 locus disruption. J Cell Sci 127:3916-27 (2014). PubMed: 24849652
  • Nath S  et al. A huntingtin-mediated fast stress response halting endosomal trafficking is defective in Huntington's disease. Hum Mol Genet N/A:N/A (2014). PubMed: 25205111
  • Eskova A  et al. An RNAi screen identifies KIF15 as a novel regulator of the endocytic trafficking of integrin. J Cell Sci 127:2433-47 (2014). PubMed: 24659801
  • Chan LS  et al. The ~ 16 kDa C-terminal sequence of clathrin assembly protein AP180 is essential for efficient clathrin binding. PLoS One 9:e110557 (2014). PubMed: 25329427
  • Wang Z  et al. Dual-factor triggered fluorogenic nanoprobe for ultrahigh contrast and subdiffraction fluorescence imaging. Biomaterials 34:6194-201 (2013). PubMed: 23721793
  • Pecar Fonovic U  et al. Profilin 1 as a target for cathepsin X activity in tumor cells. PLoS One 8:e53918 (2013). ICC/IF ; Human . PubMed: 23326535
  • Butler CA  et al. Glucocorticoid receptor ß and histone deacetylase 1 and 2 expression in the airways of severe asthma. Thorax 67:392-8 (2012). WB ; Human . PubMed: 22156779
  • Ram S  et al. 3D single molecule tracking with multifocal plane microscopy reveals rapid intercellular transferrin transport at epithelial cell barriers. Biophys J 103:1594-603 (2012). PubMed: 23062352
  • Nagajyothi F  et al. Trypanosoma cruzi utilizes the host low density lipoprotein receptor in invasion. PLoS Negl Trop Dis 5:e953 (2011). IF . PubMed: 21408103
  • Dempsey GT  et al. Evaluation of fluorophores for optimal performance in localization-based super-resolution imaging. Nat Methods 8:1027-36 (2011). PubMed: 22056676
  • Shieh JC  et al. Endocytosis regulates cell soma translocation and the distribution of adhesion proteins in migrating neurons. PLoS One 6:e17802 (2011). ICC/IF ; Mouse . PubMed: 21445347
  • Kuo YC & Chen HH Effect of electromagnetic field on endocytosis of cationic solid lipid nanoparticles by human brain-microvascular endothelial cells. J Drug Target 18:447-56 (2010). ICC/IF ; Human . PubMed: 20528098
  • Vural A  et al. Distribution of activator of G-protein signaling 3 within the aggresomal pathway: role of specific residues in the tetratricopeptide repeat domain and differential regulation by the AGS3 binding partners Gi(alpha) and mammalian inscuteable. Mol Cell Biol 30:1528-40 (2010). PubMed: 20065032
  • Moss NM  et al. Epidermal growth factor receptor-mediated membrane type 1 matrix metalloproteinase endocytosis regulates the transition between invasive versus expansive growth of ovarian carcinoma cells in three-dimensional collagen. Mol Cancer Res 7:809-20 (2009). PubMed: 19509114
  • Teckchandani A  et al. Quantitative proteomics identifies a Dab2/integrin module regulating cell migration. J Cell Biol 186:99-111 (2009). ICC/IF ; Human . PubMed: 19581412
  • Yu C  et al. Myosin VI undergoes cargo-mediated dimerization. Cell 138:537-48 (2009). ICC/IF ; Human . PubMed: 19665975
  • Wälchli S  et al. Characterization of clathrin and Syk interaction upon Shiga toxin binding. Cell Signal 21:1161-8 (2009). WB, IP ; Human . PubMed: 19289168
  • Puri C Loss of myosin VI no insert isoform (NoI) induces a defect in clathrin-mediated endocytosis and leads to caveolar endocytosis of transferrin receptor. J Biol Chem 284:34998-5014 (2009). ICC/IF ; Human . PubMed: 19840950
  • Ezratty EJ  et al. Clathrin mediates integrin endocytosis for focal adhesion disassembly in migrating cells. J Cell Biol 187:733-47 (2009). ICC/IF ; Mouse . PubMed: 19951918
  • Markovic D  et al. Intracellular mechanisms regulating corticotropin-releasing hormone receptor-2beta endocytosis and interaction with extracellularly regulated kinase 1/2 and p38 mitogen-activated protein kinase signaling cascades. Mol Endocrinol 22:689-706 (2008). PubMed: 18048641
  • Grøvdal LM  et al. Dysregulation of Ack1 inhibits down-regulation of the EGF receptor. Exp Cell Res 314:1292-300 (2008). PubMed: 18262180
  • Pryor PR  et al. Molecular basis for the sorting of the SNARE VAMP7 into endocytic clathrin-coated vesicles by the ArfGAP Hrb. Cell 134:817-27 (2008). ICC/IF ; Rat . PubMed: 18775314
  • Cortese K  et al. Clathrin and LRP-1-independent constitutive endocytosis and recycling of uPAR. PLoS ONE 3:e3730 (2008). ICC/IF ; Human . PubMed: 19008962
  • Borlido J  et al. Clathrin is spindle-associated but not essential for mitosis. PLoS ONE 3:e3115 (2008). PubMed: 18769625
  • Birkenkamp-Demtroder K  et al. Phosphoprotein Keratin 23 accumulates in MSS but not MSI colon cancers in vivo and impacts viability and proliferation in vitro. Mol Oncol 1:181-95 (2007). PubMed: 19383294
  • Spudich G  et al. Myosin VI targeting to clathrin-coated structures and dimerization is mediated by binding to Disabled-2 and PtdIns(4,5)P2. Nat Cell Biol 9:176-83 (2007). ICC/IF ; Human . PubMed: 17187061
  • Samaniego R  et al. Rho/ROCK and myosin II control the polarized distribution of endocytic clathrin structures at the uropod of moving T lymphocytes. J Cell Sci 120:3534-43 (2007). PubMed: 17895369
  • Tateno H  et al. Distinct endocytic mechanisms of CD22 (Siglec-2) and Siglec-F reflect roles in cell signaling and innate immunity. Mol Cell Biol 27:5699-710 (2007). ICC/IF ; Mouse . PubMed: 17562860
  • Bowers K  et al. Degradation of Endocytosed Epidermal Growth Factor and Virally Ubiquitinated Major Histocompatibility Complex Class I Is Independent of Mammalian ESCRTII. J Biol Chem 281:5094-105 (2006). PubMed: 16371348
  • Sun L  et al. Transmitter release face Ca2+ channel clusters persist at isolated presynaptic terminals. Eur J Neurosci 23:1391-6 (2006). PubMed: 16553800
  • Mant A  et al. Acid sensitive background potassium channels K2P3.1 and K2P9.1 undergo rapid dynamin-dependent endocytosis. Channels (Austin) 7:288-302 (0). PubMed: 23807092

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