
Phospho-SREBP-2 (Ser455) Rabbit Polyclonal Antibody#abs140149
Please note that the price provided is for your reference only. For detailed pricing information, we advise you to contact our seller, Vecent. Thank you. Western blot analysis SREBP-2 (Phospho-Ser455) using HepG2 whole cell lysates This product is for research use only, not for use in diagnostic...
Description
| Catalog-specification | Delivery time | USD price |
abs140149-100ug | 1-2 Weeks | 301.0 |
abs140149-50ug | 1-2 Weeks | 201.0 |
Please note that the price provided is for your reference only. For detailed pricing information, we advise you to contact our seller, Vecent. Thank you.
| Overview | |
catalog | abs140149 |
| Other names | Class D basic helix-loop-helix protein 2, also known as bHLHd2, is a crucial protein involved in regulating cholesterol metabolism. It plays a significant role in the transcriptional control of genes related to cholesterol synthesis and uptake. The gene encoding this protein is called SREBF2, which stands for sterol regulatory element-binding transcription factor 2. SREBF2 is responsible for processing and activating sterol regulatory element-binding protein 2 (SREBP-2) in the cell nucleus. SREBP-2 is a key regulator of cholesterol homeostasis, promoting the synthesis and uptake of cholesterol when cellular levels are low. This protein, SREBF2, is also known as processed sterol regulatory element-binding protein 2, SRBP2_HUMAN, Srebf2, SREBP 2, SREBP-2, SREBP2gc, sterol regulatory element binding factor 2, sterol regulatory element binding protein 2, or sterol regulatory element-binding transcription factor 2. In summary, bHLHd2, or Class D basic helix-loop-helix protein 2, encoded by the SREBF2 gene, is a crucial factor involved in cholesterol metabolism, functioning through the processing and activation of SREBP-2 to maintain cellular cholesterol homeostasis. |
| Source | Rabbit |
| Specificity | The SREBP-2 (Phospho-Ser455) Antibody is capable of detecting the presence of phosphorylated SREBP-2 at Ser455. This antibody specifically targets the endogenous levels of SREBP-2 when it is in a phosphorylated state. By recognizing the phosphorylation of SREBP-2 at Ser455, this antibody enables the detection and analysis of this specific protein modification. Its ability to selectively detect this phosphorylated form of SREBP-2 provides valuable insights into the regulatory mechanisms and functional implications of SREBP-2 in various biological processes. |
| Species Reactivity | Human;Mouse;Rat |
| Predictive reaction species | Zebrafish;Chicken;Rabbit;Pig;Dog;Horse;Bovine;Sheep; |
| Antigen | SREBP-2 |
| Application | WB 1:1000-3000, ELISA(peptide) 1:20000-1:40000 |
| Immunogen | SREBP-2(455)。,。,ChapGPT,。 |
| MW | 124kDa |
| Properties | |
Concentration | 1mg/ml |
| purification | The purified rabbit serum underwent affinity purification using phospho- and non-phospho-peptide affinity columns to obtain the antibody. This sequential chromatography process was employed for purification. |
| Clonality | Polyclonal Antibody |
| Stability & Storage | Store at -20 °C for one year. Avoid repeated freeze/thaw cycles |
| Storage buffer | Rabbit IgG in phosphate buffered saline , pH 7.4, 150mM NaCl, 0.02% sodium azide and 50% glycerol.Store at -20 °C.Stable for 12 months from date of receipt. |
Target | |
Background | Transcriptional activator required for lipid homeostasis. Regulates transcription of the LDL receptor gene as well as the cholesterol and to a lesser degree the fatty acid synthesis pathway (By similarity). Binds the sterol regulatory element 1 (SRE-1) (5'-ATCACCCCAC-3') found in the flanking region of the LDRL and HMG-CoA synthase genes. |
| Tissue specificity | Ubiquitously expressed in adult and fetal tissues. |
| Posttranslational modification | At low cholesterol the SCAP/SREBP complex is recruited into COPII vesicles for export from the ER. In the Golgi complex SREBPs are cleaved sequentially by site-1 and site-2 protease. The first cleavage by site-1 protease occurs within the luminal loop, the second cleavage by site-2 protease occurs within the first transmembrane domain and releases the transcription factor from the Golgi membrane. Apoptosis triggers cleavage by the cysteine proteases caspase-3 and caspase-7.Phosphorylated by AMPK, leading to suppress protein processing and nuclear translocation, and repress target gene expression. |
| Celluar localization | Cytosol;Endoplasmic reticulum;Golgi apparatus;Mitochondrion;Nucleus; |
| UniPort | Q12772 |

Western blot analysis SREBP-2 (Phospho-Ser455) using HepG2 whole cell lysates
This product is for research use only, not for use in diagnostic prodecures or in human.
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