Name : APOC3 Antibody, ALEXA FLUOR 488
Supplier : BIOSS PRIMARY CONJUGATED ANTIBODIES
Price :332
SKU : GEN7150770432
| Long name | ALEXA FLUOR 488 Conjugated, APOC3 Polyclonal Antibody |
| Also known as | Anti-APOC3 PAb ALEXA FLUOR 488 |
| Category | Conjugated Primary Antibodies |
| Conjugated with | 488, ALEXA FLUOR® |
| Host Organism | Rabbit (Oryctolagus cuniculus) |
| Target Antigen | APOC3 |
| Specificity | This is a highly specific antibody against APOC3 |
| Modification | Unmodified |
| Modification Site | None |
| Clonality | Polyclonal |
| Clone | Polyclonal antibody |
| Concentration | 1ug per 1ul |
| Immunogen range | 55-100/101 |
| Subcellular location | Secreted |
| Source | KLH conjugated synthetic peptide derived from rat Apolipoprotein CIII |
| Gene ID Number | 11814 |
| Swiss Prot | P33622 |
| Tested applications | IF(IHC-P) |
| Recommended dilutions | IF(IHC-P)(1:50-200) |
| Crossreactivity | Rat, Mouse |
| Cross-reactive species details | not every possible cross-reactivity is known, Due to limited amount of testing and knowledge |
| Background of the antigen | Impairs the lipolysis of TRLs by inhibiting lipoprotein lipase and the hepatic uptake of TRLs by remnant receptors, Intracellularly, Plays a multifaceted role in triglyceride homeostasis, attenuates hydrolysis and clearance of triglyceride-rich lipoproteins (TRLs), extracellularly, promotes hepatic very low density lipoprotein 1 (VLDL1) assembly and secretion, Component of triglyceride-rich very low density lipoproteins (VLDL) and high density lipoproteins (HDL) in plasma |
| Purification | Purified by Protein A |
| Storage conditions | 50% glycerol and 0, Keep refrigerated at 2 to 8 degrees Celcius for up to one year, 09% sodium azide, Store this antibody in aqueous buffered solution containing 1% BSA |
| Excitation emission | 499nm/519nm |
| Properties | ALEXA FLUOR they should be stored frozen at - 24°, Alexa Fluor 488 has the same range to that of fluorescein isothiocyanate (FITC), Also Alexa Fluor 488 is pH stable, As a result of this photo stability, If you buy Antibodies supplied by Bioss Primary Conjugated Antibodies, It is distinguished in the FL1 of a FACS-Calibur or FACScan, has a very high photo stability, it has turned into an antibody for fluorescent microscopy and FACS FLOW cytometry, yet the APOC3 Antibody, C, C for long term storage and for short term at + 5°, For facs or microscopy Alexa 1 conjugate |
| Conjugation | Alexa Fluor |
| Gene target | APOC3 |
| Short name | APOC3 Antibody |
| Technique | antibodies against human proteins, antibodies for, Antibody |
| Label | ALEXA FLUOR 488 |
| Alternative name | ALEXA FLUOR 488, apolipoprotein C-III (Antibody to) |
| Alternative technique | antibodies |
| Alternative to gene target | APOC3 and IDBG-630792 and ENSBTAG00000012398 and 408009, APOC3 and IDBG-72562 and ENSG00000110245 and 345, APOCIII and HALP2, Apoc3 and IDBG-161220 and ENSMUSG00000032081 and 11814, Extracellular, high-density lipoprotein particle receptor binding, this GO :0001523 and retinoid metabolic process and biological process this GO :0005543 and phospholipid binding and molecular function this GO :0005576 and extracellular region and cellular component this GO :0005615 and extracellular space and cellular component this GO :0005769 and early endosome and cellular component this GO :0006641 and triglyceride metabolic process and biological process this GO :0006642 and triglyceride mobilization and biological process this GO :0006869 and lipid transport and biological process this GO :0006954 and inflammatory response and biological process this GO :0007186 and G-protein coupled receptor signaling pathway and biological process this GO :0007584 and response to nutrient and biological process this GO :0007603 and phototransduction, this GO :0005543: phospholipid binding, this GO :0005543: phospholipid binding and also this GO :0008289: lipid binding and also this GO :0015485: cholesterol binding and also this GO :0030234: enzyme regulator activity and also this GO :0055102: lipase inhibitor activity and also this GO :0070653: high-density lipoprotein particle receptor binding, this GO :0008289: lipid binding, this GO :0015485: cholesterol binding, this GO :0030234: enzyme regulator activity, this GO :0055102: lipase inhibitor activity, this GO :0070653: high-density lipoprotein particle receptor binding, visible light and biological process this GO :0008203 and cholesterol metabolic process and biological process this GO :0008289 and lipid binding and molecular function this GO :0010897 and negative regulation of triglyceride catabolic process and biological process this GO :0010903 and negative regulation of very-low-density lipoprotein particle remodeling and biological process this GO :0010916 and negative regulation of very-low-density lipoprotein particle clearance and biological process this GO :0010987 and negative regulation of high-density lipoprotein particle clearance and biological process this GO :0010989 and negative regulation of low-density lipoprotein particle clearance and biological process this GO :0015485 and cholesterol binding and molecular function this GO :0019433 and triglyceride catabolic process and biological process this GO :0030234 and enzyme regulator activity and molecular function this GO :0032489 and regulation of Cdc42 protein signal transduction and biological process this GO :0033344 and cholesterol efflux and biological process this GO :0033700 and phospholipid efflux and biological process this GO :0034361 and very-low-density lipoprotein particle and cellular component this GO :0034363 and intermediate-density lipoprotein particle and cellular component this GO :0034366 and spherical high-density lipoprotein particle and cellular component this GO :0034375 and high-density lipoprotein particle remodeling and biological process this GO :0034379 and very-low-density lipoprotein particle assembly and biological process this GO :0034382 and chylomicron remnant clearance and biological process this GO :0042157 and lipoprotein metabolic process and biological process this GO :0042493 and response to drug and biological process this GO :0042627 and chylomicron and cellular component this GO :0042632 and cholesterol homeostasis and biological process this GO :0042953 and lipoprotein transport and biological process this GO :0043434 and response to peptide hormone and biological process this GO :0043691 and reverse cholesterol transport and biological process this GO :0044281 and small molecule metabolic process and biological process this GO :0045717 and negative regulation of fatty acid biosynthetic process and biological process this GO :0045833 and negative regulation of lipid metabolic process and biological process this GO :0048261 and negative regulation of receptor-mediated endocytosis and biological process this GO :0050995 and negative regulation of lipid catabolic process and biological process this GO :0051005 and negative regulation of lipoprotein lipase activity and biological process this GO :0055102 and lipase inhibitor activity and molecular function this GO :0060621 and negative regulation of cholesterol import and biological process this GO :0070062 and extracellular vesicular exosome and cellular component this GO :0070328 and triglyceride homeostasis and biological process this GO :0070653 and high-density lipoprotein particle receptor binding and molecular function this GO :0071333 and cellular response to glucose stimulus and biological process, apolipoprotein C-III |
| Identity | 610 |
| Gene | APOC3 |
| Long gene name | apolipoprotein C3 |
| Synonyms gene name | apolipoprotein C-III |
| Locus | 11q23, 3 |
| Discovery year | 2001-06-22 |
| GenBank acession | X01388 |
| Entrez gene record | 345 |
| RefSeq identity | NM_000040 |
| Classification | Apolipoproteins |
| Havana BLAST/BLAT | OTTHUMG00000046115 |