| Long name: |
ALEXA FLUOR 647 Conjugated, Apolipoprotein CI/APOC1 Antibody |
| Also known as: |
Anti-Apolipoprotein CI/APOC1 PAb ALEXA FLUOR 647 |
| Category: |
Conjugated Primary Antibodies |
| Conjugated with: |
647, ALEXA FLUOR® |
| Host Organism: |
Rabbit (Oryctolagus cuniculus) |
| Target Antigen: |
Apolipoprotein CI/APOC1 |
| Specificity: |
This is a highly specific antibody against Apolipoprotein CI/APOC1 |
| Modification: |
Unmodified |
| Modification Site: |
None |
| Clonality: |
Polyclonal |
| Clone: |
Polyclonal antibody |
| Concentration: |
1ug per 1ul |
| Source: |
This antibody was obtained by immunization of the host with KLH conjugated synthetic peptide derived from human Apolipoprotein CI/APOC1 |
| Gene ID Number: |
341 |
| Tested applications: |
IF(IHC-P) |
| Recommended dilutions: |
IF(IHC-P)(1:50-200) |
| Crossreactivity: |
Mouse, Rat, Human |
| Cross-reactive species details: |
not every possible cross-reactivity is known, Due to limited amount of testing and knowledge |
| Background of the antigen: |
The apolipoprotein C gene family encodes four homologous proteins designated apoC-I to -IV, The human apoC-I gene maps to chromosome 19q13, The human apoC-II gene maps to chromosome 19q13, The human apoC-III gene maps to chromosome 11q23 and encodes a protein that may delay catabolism of triglyceride-rich particles by inhibiting lipoprotein lipase and hepatic lipase, The human apoC-IV gene maps to chromosome 19q13, the enzyme that hydrolyzes triglycerides in plasma and transfers the fatty acids to tissues, which specifically modulate the metabolism of triglyceride-rich lipoproteins, 2 and encodes a 127 amino acid protein that is primarily expressed in the liver, 2 and encodes a 79 amino acid single chain protein that is a necessary cofactor for the activation of lipoprotein lipase, 2 and is expressed primarily in the liver where it is activated when monocytes differentiate into macrophages, Apolipoproteins are protein components of plasma lipoproteins |
| 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: |
650nm/665nm |
| Properties: |
ALEXA FLUOR made this Alexa Fluor 633 conjugate that can be used in multi-color flow cytometry with instruments equipped with a second red laser or red diode, ALEXA FLUOR they should be stored frozen at - 24°, Alexa Fluor 633 is a practical alternative to APC as well as Cy5, Bioss Primary Conjugated Antibodies, If you buy Antibodies supplied by Bioss Primary Conjugated Antibodies, It is detected in the FL4 detector of the core's upgraded 2-laser FACScans, Like other Alexa Fluor dyes, exhibits uncommon photo stability, making it an ideal choice for fluorescent microscopy, the Apolipoprotein CI/APOC1 Antibody, C, C for long term storage and for short term at + 5°, For facs or microscopy Alexa 1 conjugate |
| Conjugation: |
ALEXA FLUOR 647, Alexa Fluor |
| Gene target: |
Apolipoprotein CI/APOC1 |
| Short name: |
Apolipoprotein CI/APOC1 Antibody |
| Technique: |
antibodies against human proteins, antibodies for, Antibody |
| Label: |
ALEXA FLUOR 647 |
| Alternative name: |
ALEXA FLUOR 647, Apolipoprotein CI/apolipoprotein C-I (Antibody to) |
| Alternative technique: |
antibodies |
| Alternative to gene target: |
APOC1 and IDBG-56839 and ENSG00000130208 and 341, Apoc1 and IDBG-152061 and ENSMUSG00000040564 and 11812, Extracellular, phosphatidylcholine-sterol O-acyltransferase activator activity, this GO :0004859 and phospholipase inhibitor activity and molecular function this GO :0005504 and fatty acid binding and molecular function this GO :0005576 and extracellular region and cellular component this GO :0005783 and endoplasmic reticulum and cellular component this GO :0006629 and lipid metabolic process and biological process this GO :0006641 and triglyceride metabolic process and biological process this GO :0008203 and cholesterol metabolic process and biological process this GO :0010873 and positive regulation of cholesterol esterification and biological process this GO :0010900 and negative regulation of phosphatidylcholine catabolic process and biological process this GO :0010916 and negative regulation of very-low-density lipoprotein particle clearance and biological process this GO :0031210 and phosphatidylcholine binding and molecular function this GO :0032374 and regulation of cholesterol transport and biological process this GO :0032375 and negative regulation of cholesterol transport 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 :0034364 and high-density lipoprotein particle and cellular component this GO :0034369 and plasma lipoprotein particle remodeling and biological process 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 :0034447 and very-low-density lipoprotein particle clearance and biological process this GO :0042157 and lipoprotein metabolic process and biological process this GO :0042627 and chylomicron and cellular component this GO :0043085 and positive regulation of catalytic activity 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 :0060228 and phosphatidylcholine-sterol O-acyltransferase activator activity and molecular function this GO :0070062 and extracellular vesicular exosome and cellular component, this GO :0004859 : phospholipase inhibitor activity, this GO :0004859 : phospholipase inhibitor activity and also this GO :0005504 : fatty acid binding and also this GO :0031210 : phosphatidylcholine binding and also this GO :0055102 : lipase inhibitor activity and also this GO :0060228 : phosphatidylcholine-sterol O-acyltransferase activator activity, this GO :0005504 : fatty acid binding, this GO :0031210 : phosphatidylcholine binding, this GO :0055102 : lipase inhibitor activity, this GO :0060228 : phosphatidylcholine-sterol O-acyltransferase activator activity, apolipoprotein C-I |
| Identity: |
607 |
| Gene: |
APOC1 |
More about : APOC1 |
| Long gene name: |
apolipoprotein C1 |
| Synonyms gene name: |
apolipoprotein C-I |
| Locus: |
19q13, 32 |
| Discovery year: |
2001-06-22 |
| GenBank acession: |
X00570 |
| Entrez gene record: |
341 |
| Classification: |
Apolipoproteins |
| Havana BLAST/BLAT: |
OTTHUMG00000180844 |