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One or more keywords matched the following items that are connected to Campbell, Kerry
Item TypeName
Concept Receptors, KIR
Grant Molecular Regulation of Inhibitory Killer Cell Ig-like Receptors
Grant Mechanisms of NK Cell Activation by the KIR2DL4 Receptor
Grant Mechanisms of NK Cell Activation by the KIR2DL4 Receptor
Academic Article SHP-1- and phosphotyrosine-independent inhibitory signaling by a killer cell Ig-like receptor cytoplasmic domain in human NK cells.
Academic Article Src homology region 2-containing protein tyrosine phosphatase-2 (SHP-2) can play a direct role in the inhibitory function of killer cell Ig-like receptors in human NK cells.
Academic Article Blocking NK cell inhibitory self-recognition promotes antibody-dependent cellular cytotoxicity in a model of anti-lymphoma therapy.
Academic Article KIR2DL4 is an IL-2-regulated NK cell receptor that exhibits limited expression in humans but triggers strong IFN-gamma production.
Academic Article Receptors and lytic mediators regulating anti-tumor activity by the leukemic killer T cell line TALL-104.
Academic Article KIR2DL5 can inhibit human NK cell activation via recruitment of Src homology region 2-containing protein tyrosine phosphatase-2 (SHP-2).
Academic Article Protein kinase C regulates expression and function of inhibitory killer cell Ig-like receptors in NK cells.
Academic Article Structure/function of human killer cell immunoglobulin-like receptors: lessons from polymorphisms, evolution, crystal structures and mutations.
Academic Article Cutting edge: KIR2DL4 transduces signals into human NK cells through association with the Fc receptor gamma protein.
Academic Article [Natural killer cells and cancer. Regulation by the killer cell Ig-like receptors (KIR)].
Academic Article The ap-2 clathrin adaptor mediates endocytosis of an inhibitory killer cell Ig-like receptor in human NK cells.
Academic Article Natural killer cells and cancer: regulation by the killer cell Ig-like receptors (KIR).
Academic Article Mystery Checkpoint Revealed: KIR3DL3 Finally Found a Ligand in HHLA2.
Academic Article SHP-2 expression negatively regulates NK cell function.
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  • Receptors KIR