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PTPN6 antibody | antibody review based on formal publications
PTPN6 antibodies
This is a review about PTPN6 antibodies, based on 16 published articles using PTPN6 antibodies in western blot, immunohistochemistry, immunoprecipitation, immunocytochemistry, and other immunological technologies. It is aimed to help ExactAntigen visitors find the most suited PTPN6 antibody.
Santa Cruz Biotechnology    search Santa Cruz Biotechnology PTPN6 products
ip, wbSanta Cruz Biotechnology SHP-1 antibody was used in western blot and immunoprecipitation to demonstrate that KLRG1 differentially regulates NK cell and T cell functions. to the paper
ihSanta Cruz Biotech PTPN6 antibody was tested in immunohistochemistry by HPA (CAB004572) . to the paper
ip, wbSanta Cruz Biotechnology polyclonal anti-SHP-1 antibody (C-19) was used in western blot and immunoprecipitation to study regulation of SHP-1 tyrosine phosphatase in human platelets by serine phosphorylation at its C terminus. to the paper
ic, wbSanta Cruz Biotechnology mouse anti-SHP-1 antibody was used in immunocytochemistry and western blot to study the IL-2 production and proliferation in human T cells inhibited by the cell-cell adhesion molecule carcinoembryonic antigen-related cellular adhesion molecule 1. to the paper
wbSanta Cruz Biotechnology Shptp1 antibody was used in western blot to study the tumor necrosis factor alpha-dependent up-regulation of Lrh-1 and Mrp3(Abcc3) and its effect on reducing liver injury in obstructive cholestasis. to the paper
BD Biosciences    search BD Biosciences PTPN6 products
wbBD Transduction PTP1C/SHP1 antibody was tested in western blot by Abminer . to the paper
wbBD Transduction Labs anti-SHP-1 antibody was used in western blot to study positive and negative signaling by the natural killer cell receptor 2B4 (CD244). to the paper
ip, wbBD Biosciences monoclonal anti-SHP-1 antibody was used in western blot and immunoprecipitation to study regulation of SHP-1 tyrosine phosphatase in human platelets by serine phosphorylation at its C terminus. to the paper
ip, wbTransduction Laboratories anti-SHP-1 monoclonal antibody was used in western blot and immunoprecipitation to study the PTPH1 as a predominant protein-tyrosine phosphatase capable of interacting with and dephosphorylating the T cell receptor subunit. to the paper
wbTransduction Laboratories monoclonal anti-SHP-1 antibody was used in primary culture mesangial cells and in western blot to study the role for the interaction between G protein-coupled receptor and the phosphatase SHP-2 in bradykinin-induced inhibition of cell proliferation. to the paper
wbTransduction Laboratories monoclonal anti-SHP-1 antibody was used in western blot to study a potential role for tyrosine phosphatases. to the paper
Millipore    search Millipore PTPN6 products
wbUpstate SHP-1 antibody was used in western blot to study the association of ILT2 and murine MHC class I molecules in vivo. to the paper
wbUpstate Biotechnology rabbit polyclonal anti-SHP-1 antibody was used in western blot to detect SHP-1 in cultured CD34+ cells isolated from blood samples of CHD patients. to the paper
wbUpstate Biotechnology anti-SHP-1 polyclonal Ab was used in western blot to study the role of Siglec-7 (p70/AIRM) and Siglec-9 to negatively regulate T cell receptor signaling. to the paper
wb Upstate Biotechnology rabbit polyclonal anti-SHP-1 antibody was used in western blot to study the hairless gene mutation in congenital hair loss disorders. to the paper
wbUpstate Biotechnology rabbit anti-SHP-1 antibody was used in western blot to describe the identification and characterization of a myeloid inhibitory C-type lectin-like receptor (MICL) that is a negative regulator of granulocyte and monocyte function. to the paper
DR. T. KUROSAKI (KANSAI MEDICAL UNIVERSITY, MORIGUCHI, JAPAN)
wbDr. T. Kurosaki anti-SHP-1 antibody was used in western blot to study the role of leukocyte-associated Ig-like receptor-1. to the paper
Articles Reviewed
1:Marlowe S Tessmer et al. KLRG1 binds cadherins and preferentially associates with SHIP-1. 2007
2:Sylvia M Major et al. AbMiner: a bioinformatic resource on available monoclonal antibodies and corresponding gene identifiers for genomic, proteomic, and immunologic studies. 2006
3:Anja Persson et al. A human protein atlas based on antibody proteomics. 2006
4:Annelies Verbrugge et al. Leukocyte-associated Ig-like receptor-1 has SH2 domain-containing phosphatase-independent function and recruits C-terminal Src kinase. 2006
5:Siyuan Liang et al. Human ILT2 receptor associates with murine MHC class I molecules in vivo and impairs T cell function. 2006
6:Philipp Eissmann et al. Molecular basis for positive and negative signaling by the natural killer cell receptor 2B4 (CD244). 2005
7:Andrew S J Marshall et al. Identification and characterization of a novel human myeloid inhibitory C-type lectin-like receptor (MICL) that is predominantly expressed on granulocytes and monocytes. 2004
8:Sei-ichi Yusa et al. KIR2DL5 can inhibit human NK cell activation via recruitment of Src homology region 2-containing protein tyrosine phosphatase-2 (SHP-2). 2004
9:Charng-Jui Chen et al. The cell-cell adhesion molecule carcinoembryonic antigen-related cellular adhesion molecule 1 inhibits IL-2 production and proliferation in human T cells by association with Src homology protein-1 and down-regulates IL-2 receptor. 2004
10:Shigeru Akagi et al. The critical role of SRC homology domain 2-containing tyrosine phosphatase-1 in recombinant human erythropoietin hyporesponsive anemia in chronic hemodialysis patients. 2004
11:Yuzuru Ikehara et al. Negative regulation of T cell receptor signaling by Siglec-7 (p70/AIRM) and Siglec-9. 2004
12:Matthew L Jones et al. Regulation of SHP-1 tyrosine phosphatase in human platelets by serine phosphorylation at its C terminus. 2004
13:Margaret S Sozio et al. PTPH1 is a predominant protein-tyrosine phosphatase capable of interacting with and dephosphorylating the T cell receptor zeta subunit. 2004
14:Alan Bohan et al. Tumor necrosis factor alpha-dependent up-regulation of Lrh-1 and Mrp3(Abcc3) reduces liver injury in obstructive cholestasis. 2003
15:Christine Guntermann et al. CTLA-4 suppresses proximal TCR signaling in resting human CD4(+) T cells by inhibiting ZAP-70 Tyr(319) phosphorylation: a potential role for tyrosine phosphatases. 2002
16:Johan Duchene et al. A novel protein-protein interaction between a G protein-coupled receptor and the phosphatase SHP-2 is involved in bradykinin-induced inhibition of cell proliferation. 2002


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