Anti-ATP6AP1 Antibody
- 产品详情
- 实验流程
Application
| WB, FC |
|---|---|
| Primary Accession | Q15904 |
| Reactivity | Human, Mouse |
| Host | Mouse |
| Clonality | Monoclonal |
| Calculated MW | 52026 Da |
| Gene ID | 537 |
|---|---|
| Other Names | ATP6IP1; ATP6S1; VATPS1; XAP3; V-type proton ATPase subunit S1; V-ATPase subunit S1; Protein XAP-3; V-ATPase Ac45 subunit; V-ATPase S1 accessory protein; Vacuolar proton pump subunit S1 |
| Target/Specificity | Recombinant fusion protein of human ATP6AP1 expressed in E. Coli |
| Dilution | WB~~WB (1/500 - 1/1000) FC~~FC (1/100 - 1/200) |
| Format | Mouse IgG1. Liquid in PBS, pH 7.3, 30% glycerol, and 0.01% sodium azide. |
| Storage | Store at -20 °C.Stable for 12 months from date of receipt |
For Research Use Only. Not For Use In Diagnostic Procedures.
| Name | ATP6AP1 |
|---|---|
| Synonyms | ATP6IP1, ATP6S1, VATPS1, XAP3 |
| Function | Accessory subunit of the V0 complex of vacuolar(H+)-ATPase (V-ATPase), a multisubunit enzyme composed of a peripheral complex (V1) that hydrolyzes ATP and a membrane integral complex (V0) that translocates protons (PubMed:28296633, PubMed:33065002). V-ATPase is responsible for acidifying and maintaining the pH of intracellular compartments and in some cell types, is targeted to the plasma membrane, where it promotes acidification of the extracellular environment (PubMed:28296633, PubMed:33065002). The V-ATPase complex also acts as an activator for mTORC1 on lysosomal membrane by promoting the guanine nucleotide exchange factor (GEF) of the Ragulator complex, thereby enabling mTORC1 recruitment (PubMed:22053050). Guides the V- type ATPase into specialized subcellular compartments, such as neuroendocrine regulated secretory vesicles or the ruffled border of the osteoclast, thereby regulating its activity (PubMed:27231034). Involved in membrane trafficking and Ca(2+)-dependent membrane fusion (PubMed:27231034). May play a role in the assembly of the V-type ATPase complex (Probable). In aerobic conditions, involved in intracellular iron homeostasis, thus triggering the activity of Fe(2+) prolyl hydroxylase (PHD) enzymes, and leading to HIF1A hydroxylation and subsequent proteasomal degradation (PubMed:28296633). In islets of Langerhans cells, may regulate the acidification of dense-core secretory granules (By similarity). |
| Cellular Location | Endoplasmic reticulum membrane; Single-pass type I membrane protein. Endoplasmic reticulum-Golgi intermediate compartment membrane. Cytoplasmic vesicle, secretory vesicle, synaptic vesicle membrane {ECO:0000250|UniProtKB:O54715}; Single-pass type I membrane protein. Cytoplasmic vesicle, clathrin-coated vesicle membrane {ECO:0000250|UniProtKB:O54715}; Single-pass type I membrane protein. Note=Not detected in trans-Golgi network. |
| Tissue Location | widely expressed, with highest levels in brain and lowest in liver and duodenum. |
Research Areas
Application Protocols
Provided below are standard protocols that you may find useful for product applications.
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