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Description
Biotinylated ANGPTL3(17-220) His&Avi Tag Protein, HumanProduct Specification Species Human Synonyms ANGPTL3,ANGPT5,ANG 5,Angiopoietin 5,FHBL2 Accession Q9Y5C1 Amino Acid Sequence Ser17 Pro220, with C terminal His+Avi tag Expression System HEK293 Molecular Weight 40 53kDa (Reducing) Purity 95% by SDS PAGE Endotoxin <1EU g Conjugation Unconjugated Tag Avi Tag, His Tag Physical Appearance Lyophilized Powder Storage Buffer PBS, pH7. 4. Reconstitution Reconstitute at 0. 1 1 mg ml according to the size in
Product Specification
| Species | Human |
| Synonyms | ANGPTL3,ANGPT5,ANG-5,Angiopoietin-5,FHBL2 |
| Accession | Q9Y5C1 |
| Amino Acid Sequence | Ser17-Pro220, with C-terminal His+Avi tag |
| Expression System | HEK293 |
| Molecular Weight | 40-53kDa (Reducing) |
| Purity | >95% by SDS-PAGE |
| Endotoxin | <1EU/μg |
| Conjugation | Unconjugated |
| Tag | Avi Tag, His Tag |
| Physical Appearance | Lyophilized Powder |
| Storage Buffer | PBS, pH7.4. |
| Reconstitution | Reconstitute at 0.1-1 mg/ml according to the size in ultrapure water after rapid centrifugation. |
| Stability & Storage | · 12 months from date of receipt, lyophilized powder stored at -20 to -80℃. · 3 months, -20 to -80℃ under sterile conditions after reconstitution. · 1 week, 2 to 8℃ under sterile conditions after reconstitution. · Please avoid repeated freeze-thaw cycles. |
| Reference | 1. Nathan O. Stitziel, Amit V. Khera, Xiao Wang, Andrew J. Bierhals, A. Christina Vourakis, Alexandra E. Sperry, Pradeep Natarajan, Derek Klarin, Connor A. Emdin, Seyedeh M. Zekavat, Akihiro Nomura, Jeanette Erdmann: ANGPTL3 Deficiency and Protection Against Coronary Artery Disease. J Am Coll Cardiol. 2017 Apr, 69 (16) 2054–2063. |
Background
Angiopoietin-like protein 3 (ANGPTL3) belongs to a multifunctional secreted protein that mainly expresses in the liver, and is regulated by numerous post-translational modifications, including multiple cleavage and glycosylation. ANGPTL3 has the characteristic structure of angiopoietins, consisting of a signal peptide, N-terminal coiled-coil domain and the C-terminal fibrinogen (FBN)-like domain. The N-terminal chain is important for lipid metabolism, while the C-terminal chain may be involved in angiogenesis. Accumulating evidences have revealed that ANGPTL3 plays a critical role in both biological processes, such as lipid metabolism, angiogenesis and haematopoietic function and pathological changes, including atherosclerosis, carcinogenesis, nephrotic syndrome, diabetes, liver diseases and so on. Thus, ANGPTL3 may serve as a potential biomarker in these diseases. Furthermore, ANGPTL3 signalling pathways including LXR/ANGPTL3, thyroid hormone/ANGPTL3, insulin/ANGPTL3 and leptin/ANGPTL3 are also involved in physiological and pathological processes. Some biological ANGPTL3 inhibitors, chemical drugs and traditional Chinese medicine exert beneficial effects by targeting ANGPTL3 directly or indirectly. Therefore, elucidating the effects and underlying mechanisms of ANGPTL3 is essential to develop promising strategies in the diagnosis and treatment of related diseases.
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