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Cytotoxicity-activating receptor that may contribute to the increased efficiency of activated natural killer (NK) cells to mediate tumor cell lysis.. Zusätzlich bieten wir Ihnen Natural Cytotoxicity Triggering Receptor 2 Antikörper (116) und Natural Cytotoxicity Triggering Receptor 2 Kits (4) und viele weitere Produktgruppen zu diesem Protein an.
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On CD56 (zeige NCAM1 Proteine)(+) CD3 (zeige CD3 Proteine)(-) cells, NKp44 and NKp46 (zeige NCR1 Proteine) expressions were high in the acute hepatitis E patients, whereas NKp30 (zeige NCR3 Proteine), NKp44, NKp46 (zeige NCR1 Proteine) and NKG2D (zeige KLRK1 Proteine) were high in the recovered individuals.
demonstrated that the mitogen and iK562 exposure to peripheral blood mononuclear cells can significantly improve NK activity which is co-related to the higher expression of NKp44 and NKG2D (zeige KLRK1 Proteine)
NCR(+) ILC3 from skin and blood of psoriasis patients produced IL-22 (zeige IL22 Proteine), which is regarded as a key driver of epidermal thickening, suggesting that NCR(+) ILC3 may participate in psoriasis pathology.
Balance between activating NKG2D (zeige KLRK1 Proteine), DNAM-1 (zeige CD226 Proteine), NKp44 and NKp46 (zeige NCR1 Proteine) and inhibitory CD94 (zeige KLRD1 Proteine)/NKG2A (zeige KLRC1 Proteine) receptors determine natural killer degranulation towards rheumatoid arthritis synovial fibroblasts.
NKp44+ ILC3 are expressed in human skin and blood and may have a role in psoriasis pathogenesis
Expression of NKp44 ligand by normal articular chondrocytes is not involved in their killing by unstimulated NK cells; however, it is responsible for anti-chondrocyte cytotoxicity mediated by long-term activated NK cells.
MLL5 is a cellular ligand for the natural cytotoxicity receptor NKp44.
Natural killer cells in HIV controller patients express an activated effector phenotype and do not up-regulate NKp44 on IL-2 (zeige IL2 Proteine) stimulation.
Novel interaction between proliferating cell nuclear antigen (zeige PCNA Proteine) and HLA I on the surface of tumor cells inhibits NK cell function through NKp44.
While interaction of TLR2 with mycobacterial cell wall promotes activation of resting NK cells and IFN-gamma (zeige IFNG Proteine) production, NKp44 interaction with its putative ligands could play a secondary role in maintaining cell activation
Cytotoxicity-activating receptor that may contribute to the increased efficiency of activated natural killer (NK) cells to mediate tumor cell lysis.
natural cytotoxicity triggering receptor 2
, NK cell activating receptor (NKp44)
, NK cell-activating receptor
, lymphocyte antigen 95 (activating NK-receptor; NK-p44)
, lymphocyte antigen 95 homolog (activating NK-receptor; NK-p44)
, natural killer cell p44-related protein