AGPAT6
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Official Full Name
1-acylglycerol-3-phosphate O-acyltransferase 6
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Overview
Lysophosphatidic acid acyltransferases (EC 2.3.1.51) catalyze the conversion of lysophosphatidic acid (LPA) to phosphatidic acid (PA). LPA and PA are involved in signal transduction and lipid biosynthesis.[supplied by OMIM, Apr 2004] -
Synonyms
AGPAT6; 1-acylglycerol-3-phosphate O-acyltransferase 6; LPAATZ; TSARG7; 1-AGPAT 6; LPAAT-zeta; glycerol-3-phosphate acyltransferase 6; 1-AGP acyltransferase 6; lysophosphatidic acid acyltransferase zeta; testis spermatogenesis apoptosis-related protein 7; 1-acyl-sn-glycerol-3-phosphate acyltransferase zeta; 1-acylglycerol-3-phosphate O-acyltransferase 6 (lysophosphatidic acid acyltransferase, zeta);
- Recombinant Proteins
- Cell & Tissue Lysates
- Protein Pre-coupled Magnetic Beads
- Human
- Mouse
- Zebrafish
- E.coli
- HEK293
- In Vitro Cell Free System
- Mammalian Cell
- Wheat Germ
- GST
- His
- His (Fc)
- Avi
- N/A
Species | Cat.# | Product name | Source (Host) | Tag | Protein Length | Price |
---|---|---|---|---|---|---|
Human | AGPAT6-9478H | Recombinant Human AGPAT6, GST-tagged | E.coli | GST | 206-456a.a. | |
Human | AGPAT6-435H | Recombinant Human AGPAT6 Protein, GST-tagged | Wheat Germ | GST | ||
Human | AGPAT6-37HCL | Recombinant Human AGPAT6 cell lysate | N/A | |||
Human | AGPAT6-934HF | Recombinant Full Length Human AGPAT6 Protein, GST-tagged | In Vitro Cell Free System | GST | 456 amino acids | |
Mouse | AGPAT6-1421M | Recombinant Mouse AGPAT6 Protein | Mammalian Cell | His | ||
Mouse | AGPAT6-391M | Recombinant Mouse AGPAT6 Protein, His (Fc)-Avi-tagged | HEK293 | His (Fc)-Avi | ||
Mouse | AGPAT6-391M-B | Recombinant Mouse AGPAT6 Protein Pre-coupled Magnetic Beads | HEK293 | |||
Zebrafish | AGPAT6-3735Z | Recombinant Zebrafish AGPAT6 | Mammalian Cell | His |
- Involved Pathway
- Protein Function
- Interacting Protein
- AGPAT6 Related Articles
AGPAT6 involved in several pathways and played different roles in them. We selected most pathways AGPAT6 participated on our site, such as CDP-diacylglycerol biosynthesis, Fatty acid, triacylglycerol, and ketone body metabolism, Glycerolipid metabolism, which may be useful for your reference. Also, other proteins which involved in the same pathway with AGPAT6 were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.
Pathway Name | Pathway Related Protein |
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CDP-diacylglycerol biosynthesis | AGPAT6;GK5;AGPAT2;AGPAT1;GPAT2;CDS1 |
Fatty acid, triacylglycerol, and ketone body metabolism | ACOT13;ESRRA;TIAM2;TMEM195;ACOT11B;MED16;ACOT11A;ABCA1;CPT2 |
Glycerolipid metabolism | AGPAT2;AGPAT1;MOGAT3;AGPAT5;LCLAT1;ALDH9A1B;LPIN2;AGK;MBOAT1 |
Glycerophospholipid biosynthesis | DGAT1B;PLB1;PEMT;GPAT2;PITPNB;CPNE7;CPNE1;CEPT1A;PHOSPHO1 |
Glycerophospholipid metabolism | PMT;TAZ;PLA2G4C;PTDSS2;GPD1A;PCYT1BB;PLA2G1B;DGKG;PISD |
Metabolic pathways | DAD1;GCDHB;APIP;NADK;ALOX15;B4GALT1;TDO2;AHCY;ME3 |
Metabolism | GNG13B;DGUOK;CYP2K22;FAAH2;HS3ST4;UGT1B2;PNP5B;TPTE;ADSSL1 |
Metabolism of lipids and lipoproteins | CYP2Y3;CPNE6;CHKA;CETP;CPNE3;DHCR7;ACOT11A;BRSK2;CYP2R1 |
AGPAT6 has several biochemical functions, for example, NOT 1-acylglycerol-3-phosphate O-acyltransferase activity, glycerol-3-phosphate O-acyltransferase activity. Some of the functions are cooperated with other proteins, some of the functions could acted by AGPAT6 itself. We selected most functions AGPAT6 had, and list some proteins which have the same functions with AGPAT6. You can find most of the proteins on our site.
Function | Related Protein |
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NOT 1-acylglycerol-3-phosphate O-acyltransferase activity | |
glycerol-3-phosphate O-acyltransferase activity | AGPAT9;AGPAT9L;AGPAT6;GPAT2;GPAM |
AGPAT6 has direct interactions with proteins and molecules. Those interactions were detected by several methods such as yeast two hybrid, co-IP, pull-down and so on. We selected proteins and molecules interacted with AGPAT6 here. Most of them are supplied by our site. Hope this information will be useful for your research of AGPAT6.
HSD17B7; 1C
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Write a reviewThe product’s ability to modulate signal pathways played a crucial role in our discoveries.
Replicating outcomes across different cell types showcased the product’s consistent behavior.
Compatibility with a range of assays expanded our experimental possibilities significantly.
The consistent outcomes obtained with the product validated its role in our experimental models.
It's innovative features allowed us to explore previously uncharted cellular mechanisms.
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