IL-10 R alpha / DyLight 755 / RM0101-9E12
Product Details
Description | This was produced from a hybridoma (mouse myeloma fused with spleen cells from a hamster immunized with mouse recombinant protein of extracellular domain of IL-10R alpha. | |
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Conjugate | DyLight 755 | |
Clone | RM0101-9E12 | |
Target Species | Mouse | |
Applications | IHC-P, WB, IHC | |
Supplier | Novus Biologicals | |
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About IL-10 R alpha
The protein encoded by this gene is a receptor for interleukin 10. This protein is structurally related to interferon receptors. It has been shown to mediate the immunosuppressive signal of interleukin 10, and thus inhibits the synthesis of proinflammatory cytokines. This receptor is reported to promote survival of progenitor myeloid cells through the insulin receptor substrate-2/PI 3-kinase/AKT pathway. Activation of this receptor leads to tyrosine phosphorylation of JAK1 and TYK2 kinases. Two transcript variants, one protein-coding and the other not protein-coding, have been found for this gene. [provided by RefSeq, Jan 2009]
The protein encoded by this gene is a receptor for interleukin 10. This protein is structurally related to interferon receptors. It has been shown to mediate the immunosuppressive signal of interleukin 10, and thus inhibits the synthesis of proinflammatory cytokines. This receptor is reported to promote survival of progenitor myeloid cells through the insulin receptor substrate-2/PI 3-kinase/AKT pathway. Activation of this receptor leads to tyrosine phosphorylation of JAK1 and TYK2 kinases. Two transcript variants, one protein-coding and the other not protein-coding, have been found for this gene. [provided by RefSeq, Jan 2009]
About DyLight 755
DyLight™ 755 has an excitation peak of 754 nm and an emission peak of 776 nm and is spectrally similar to Alexa Fluor™ 750. DyLight™ 755 is most commonly used in fluorescence micrscopy.
DyLight™ 755 has an excitation peak of 754 nm and an emission peak of 776 nm and is spectrally similar to Alexa Fluor™ 750. DyLight™ 755 is most commonly used in fluorescence micrscopy.
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