Antibodies that detect STIM2 can be used in several scientific applications, including Western Blot, Immunohistochemistry, Immunoprecipitation, ELISA and Immunocytochemistry. These antibodies target STIM2 in Human, Mouse, Rat and Non-human primate samples. Our STIM2 polyclonal...Antibodies that detect STIM2 can be used in several scientific applications, including Western Blot, Immunohistochemistry, Immunoprecipitation, ELISA and Immunocytochemistry. These antibodies target STIM2 in Human, Mouse, Rat and Non-human primate samples. Our STIM2 polyclonal antibodies are developed in Rabbit and...Antibodies that detect STIM2 can be used in several scientific applications, including Western Blot, Immunohistochemistry, Immunoprecipitation, ELISA and Immunocytochemistry. These antibodies target STIM2 in Human, Mouse, Rat and Non-human primate samples. Our STIM2 polyclonal antibodies are developed in Rabbit and Sheep. Find the STIM2 antibody that fits your needs. Choose from 1 of 17 STIM2 antibodies, which have been validated in experiments with 17 publications and 49 images featured in our data gallery.
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...
Antibodies that detect STIM2 can be used in several scientific applications, including Western Blot, Immunohistochemistry, Immunoprecipitation, ELISA and Immunocytochemistry. These antibodies target STIM2 in Human, Mouse, Rat and Non-human primate samples. Our STIM2 polyclonal antibodies are developed in Rabbit and Sheep. Find the STIM2 antibody that fits your needs. Choose from 1 of 17 STIM2 antibodies, which have been validated in experiments with 17 publications and 49 images featured in our data gallery.
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
In T lymphocytes, the sole pathway for Ca++ entry following antigen-receptor binding is through store-operated Ca++-release-activated Ca++ (CRAC) channels. These channels are made up of the pore-forming subunit ORAI1 and the stromal interaction molecule 1 (STIM1), a protein that functions as a Ca++ sensor and activates the CRAC channels, migrating to the plasma membrane from endoplasmic reticulum (ER)-like sites which act as the Ca++ store. A related molecule, STIM2, acts to inhibit the STIM1-mediated store-operated Ca++ entry, and can form complexes with STIM1, suggesting they may play a coordinated role in controlling Ca++ entry. At least three isoforms of STIM2 are known to exist.
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