Antibodies that detect SUR1/SUR2B can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry and Western Blot. These antibodies target SUR1/SUR2B in Mouse and Rat samples. Our SUR1/SUR2B monoclonal antibodies are developed in...Antibodies that detect SUR1/SUR2B can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry and Western Blot. These antibodies target SUR1/SUR2B in Mouse and Rat samples. Our SUR1/SUR2B monoclonal antibodies are developed in Mouse. Find the SUR1/SUR2B antibody that...Antibodies that detect SUR1/SUR2B can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry and Western Blot. These antibodies target SUR1/SUR2B in Mouse and Rat samples. Our SUR1/SUR2B monoclonal antibodies are developed in Mouse. Find the SUR1/SUR2B antibody that fits your needs. Choose from 1 of 5 SUR1/SUR2B antibodies.
Browse primary antibodies for WB, Flow, IHC, ICC/IF, ELISA, IP, and other applications. Antibodies with Advanced Verification data have been validated for specificity to ensure that the antibody binds to the antigen stated. If you cannot find the antibody you’re looking for, contact us today to develop...
Antibodies that detect SUR1/SUR2B can be used in several scientific applications, including ELISA, Immunocytochemistry, Immunohistochemistry and Western Blot. These antibodies target SUR1/SUR2B in Mouse and Rat samples. Our SUR1/SUR2B monoclonal antibodies are developed in Mouse. Find the SUR1/SUR2B antibody that fits your needs. Choose from 1 of 5 SUR1/SUR2B antibodies.
Browse primary antibodies for WB, Flow, IHC, ICC/IF, ELISA, IP, and other applications. Antibodies with Advanced Verification data have been validated for specificity to ensure that the antibody binds to the antigen stated. If you cannot find the antibody you’re looking for, contact us today to develop custom antibodies for specific targets, species and applications.
靶标信息
Sulfonylurea receptors (SUR) are membrane proteins which are the molecular targets of the sulfonylurea class of anti-diabetic drugs whose mechanism of action is to promote insulin release from pancreatic beta cells. More specifically, SUR proteins are subunits of the inward-rectifier potassium ion channels Kir6.x (6.1 and 6.2). The association of four Kir6.x and four SUR subunits form an ion conducting channel commonly referred to as the KATP channel. The primary function of the sulfonylurea receptor is to sense intracellular levels of the nucleotides ATP and ADP and in response facilitate the open or closing its associated Kir6.x potassium channel. Hence the KATP channel monitors the energy balance within the cell.
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