CTLA-4 Monoclonal / PE / REA984

Product Details
Description Clone REA984 recognizes the mouse CD152 antigen, also known as cytotoxic T lymphocyte antigen-4 (CTLA-4), which is a 33 kDa member of the immunoglobin superfamily and is expressed on activated T cells at a low level. CTLA-4 and CD28 have similarities concerning B7 family counter-receptors. While CD28 delivers a co-stimulary signal in T cell activation, CD152 restricts the progression of T cells to an activated state by inhibiting interleukin 2 (IL-2) secretion and cellular proliferation. A large proportion of CTLA-4 is intracellular localized. For a complete detection it may be necessary to assess intracellular staining in addition to surface expression of CD152. | Additional information: Clone REA984 displays negligible binding to Fc receptors.
Conjugate PE
Clone REA984
Target Species Mouse
Applications FC
Supplier Miltenyi Biotec
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About CTLA-4
This gene is a member of the immunoglobulin superfamily and encodes a protein which transmits an inhibitory signal to T cells. The protein contains a V domain, a transmembrane domain, and a cytoplasmic tail. Alternate transcriptional splice variants, encoding different isoforms, have been characterized. The membrane-bound isoform functions as a homodimer interconnected by a disulfide bond, while the soluble isoform functions as a monomer. Mutations in this gene have been associated with insulin-dependent diabetes mellitus, Graves disease, Hashimoto thyroiditis, celiac disease, systemic lupus erythematosus, thyroid-associated orbitopathy, and other autoimmune diseases. [provided by RefSeq, Jul 2008]
About PE
Phycoerythrin (PE, R-PE) is a red-emitting fluorescent protein-chromophore complex that can be excited the 488-nm blue, 532-nm green, or 561-nm yellow-green laser with increasing efficiency and captured with a 586/14 nm bandpass filter. PE has an excitation peak at 565 nm and an emission peak at 578 nm. PE is 240kD in size and has an extinction coefficient of ~2x10^6 which makes it one of the brightest fluorophores available and a potent donor upon which to build tandem fluorophores with longer Stoke's Shifts.
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