Human VSTM3 Protein, His Tag
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产品编号
KMP2415
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别名
具有免疫球蛋白和 ITIM 结构域的 T 细胞免疫受体, T-cell immunoreceptor with Ig and ITIM domains,, VSIG9
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规格
- 50ug
- 100ug
- 200ug
| Catalog Number | KMP2415 |
| Alias | 具有免疫球蛋白和 ITIM 结构域的 T 细胞免疫受体, T-cell immunoreceptor with Ig and ITIM domains,, VSIG9 |
| Size | 50ug, 100ug, 200ug |
| Product Description | The Human VSTM3 Protein(KMP2415) is produced in HEK293 Cells and the target gene encoding Met22-Pro141 is expressed with a 6His tag at the C-terminus. |
| Molecular Name | VSTM3 |
| Product Introduction | VSTM3:V-set域跨膜蛋白,参与免疫细胞的信号转导和功能调节。 |
| Molecular Weight | 13.89 kDa |
| Expression System | HEK293 Cells |
| Species | Human |
| Purity | >95% |
| SDS-PAGE | ![]() |
| Purification | Affinity Purification |
| Uniprot ID | C9J0B0#structure |
| Storage Condition | Aliquot and store at -20℃ to -80℃. Avoid repeated freezing and thawing cycles. |
| Formulation | PBS, pH7.4 |
| Shipping Condition | In general, the proteins are provided as lyophilized powder which are shipped at ambient temperature. They are shipped out in dry ice if supplied in liquid form. |
| Background | T cell immunoreceptor with Ig and ITIM domains(TIGIT) is a member of the CD28 family within the Ig superfamily of proteins. TIGIT is expressed on NK cells and subsets of activated, memory and regulatory T cells, and particularly on follicular helper T cells within secondary lymphoid organs. It binds to CD155 and Nectin-2 that appear on dendritic cells(DC) and endothelium. Ligation of TIGIT on T cells down-regulates TCR-mediated activation and subsequent proliferation, while NK cell TIGIT ligation blocks NK cell cytotoxicity. Through CD155 and Nectin-2, which also interact with DNAM-1/CD226 and CD96/Tactile, TIGIT is part of an interacting network of Ig superfamily members that may augment or oppose each other. In particular, TIGIT binding to CD155 can antagonize the effects of DNAM1. |
| Endotoxin | <1.0 EU/ug determined by the LAL method |
| Product Declaration | 该产品仅供科研使用,不可直接用于人体或注射。 |
蛋白可以在-80°C下储存以便长期保存。应分装并避免冻融循环,以保持蛋白的稳定性。
可以通过优化质粒设计、使用高效转染试剂、优化细胞培养条件以及使用蛋白折叠伴侣或密码子优化来提高蛋白表达效率。
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