AGMO
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Official Full Name
alkylglycerol monooxygenase
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Overview
The protein encoded by this gene is a tetrahydrobiopterin- and iron-dependent enzyme that cleaves the ether bond of;alkylglycerols. Sequence comparisons distinguish this protein as forming a third, distinct class of;tetrahydrobiopterin-dependent enzymes. Variations in this gene have been associated with decreased glucose-stimulated;insulin response, type 2 diabetes, and susceptibility to intracranial aneurysms. -
Synonyms
AGMO; alkylglycerol monooxygenase; TMEM195, transmembrane protein 195; FLJ16237; Transmembrane protein 195; TMEM195;
- Recombinant Proteins
- Protein Pre-coupled Magnetic Beads
- Danio rerio (Zebrafish) (Brachydanio rerio)
- Homo sapiens (Human)
- Mus musculus (Mouse)
- Rat
- Rattus norvegicus (Rat)
- Xenopus tropicalis (Western clawed frog) (Silurana tropicalis)
- Zebrafish
- E.coli expression system
- E.Coli or Yeast
- HEK293
- Mammalian Cell
- His
- His (Fc)
- Avi
Species | Cat.# | Product name | Source (Host) | Tag | Protein Length | Price |
---|---|---|---|---|---|---|
Rat | Agmo-3276R | Recombinant Rat Agmo, His-tagged | E.Coli or Yeast | His | 447 | |
Rat | AGMO-560R | Recombinant Rat AGMO Protein | Mammalian Cell | His | ||
Rat | AGMO-216R-B | Recombinant Rat AGMO Protein Pre-coupled Magnetic Beads | HEK293 | |||
Rat | AGMO-216R | Recombinant Rat AGMO Protein, His (Fc)-Avi-tagged | HEK293 | His (Fc)-Avi | ||
Danio rerio (Zebrafish) (Brachydanio rerio) | RFL11677DF | Recombinant Full Length Danio Rerio Alkylglycerol Monooxygenase(Agmo) Protein, His-Tagged | E.coli expression system | His | Full Length (1-446) | |
Homo sapiens (Human) | RFL849HF | Recombinant Full Length Human Alkylglycerol Monooxygenase(Agmo) Protein, His-Tagged | E.coli expression system | His | Full Length (1-445) | |
Mus musculus (Mouse) | RFL35366MF | Recombinant Full Length Mouse Alkylglycerol Monooxygenase(Agmo) Protein, His-Tagged | E.coli expression system | His | Full Length (1-447) | |
Rattus norvegicus (Rat) | RFL27095RF | Recombinant Full Length Rat Alkylglycerol Monooxygenase(Agmo) Protein, His-Tagged | E.coli expression system | His | Full Length (1-447) | |
Xenopus tropicalis (Western clawed frog) (Silurana tropicalis) | RFL27142XF | Recombinant Full Length Xenopus Tropicalis Alkylglycerol Monooxygenase(Agmo) Protein, His-Tagged | E.coli expression system | His | Full Length (1-446) | |
Zebrafish | AGMO-12141Z | Recombinant Zebrafish AGMO | Mammalian Cell | His |
- Involved Pathway
- Protein Function
- Interacting Protein
- AGMO Related Articles
AGMO involved in several pathways and played different roles in them. We selected most pathways AGMO participated on our site, such as Fatty acid, triacylglycerol, and ketone body metabolism, Metabolism, Metabolism of lipids and lipoproteins, which may be useful for your reference. Also, other proteins which involved in the same pathway with AGMO were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.
Pathway Name | Pathway Related Protein |
---|---|
Fatty acid, triacylglycerol, and ketone body metabolism | ACOT9.2;TMEM195;ACOT7;ACSF2;MED10;ECI1;ACOT11B;DGAT1B;ACAD11 |
Metabolism | AMDHD1;LSM1;DGAT1B;ALDH9A1A.2;CA13;UGT1B7;NQO1;LYRM4;ELA2 |
Metabolism of lipids and lipoproteins | CYP27A1;APOA5;SACM1LA;SLC25A20;AWAT2;ARSI;SLC27A5;CPNE6;CRAT |
Triglyceride Biosynthesis | ACOT6;SLC25A1;ACOT11;DGAT1B;ACOT13;ACSF3;ACOT11A;ACOT9.2;ACOT9 |
AGMO has several biochemical functions, for example, glyceryl-ether monooxygenase activity, iron ion binding. Some of the functions are cooperated with other proteins, some of the functions could acted by AGMO itself. We selected most functions AGMO had, and list some proteins which have the same functions with AGMO. You can find most of the proteins on our site.
Function | Related Protein |
---|---|
glyceryl-ether monooxygenase activity | TMEM195;Agmo |
iron ion binding | CYP2P8;HBAA;CH25H;CYP2K18;CYP2C55;CYGB2;CYP26A1;CYP2AD6;TPH2 |
AGMO 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 AGMO here. Most of them are supplied by our site. Hope this information will be useful for your research of AGMO.
- Q&As
- Reviews
Q&As (20)
Ask a questionDiagnosis involves assessing lipid profiles and genetic testing for AGMO mutations.
Research investigates AGMO's role in alkylglycerol degradation pathways.
AGMO is primarily located in the endoplasmic reticulum of cells.
Yes, AGMO deficiency can impact cell membrane composition and function.
Yes, AGMO's role in lipid metabolism might impact mitochondrial function.
AGMO stands for "Alkylglycerol monooxygenase," an enzyme involved in lipid metabolism.
AGMO dysfunction can disrupt lipid homeostasis and membrane integrity.
AGMO is involved in the oxidation of alkylglycerols, a type of lipid.
Yes, AGMO's role in lipid metabolism could impact inflammation pathways.
Research investigates modulating AGMO's activity for potential therapeutic applications.
AGMO's involvement in lipid metabolism is explored in relation to cancer cell growth.
AGMO's role in lipid metabolism could impact lipid signaling pathways.
Research explores whether AGMO's function is conserved in different organisms.
AGMO's activity contributes to the degradation of ether lipids, including plasmalogens.
AGMO's role in lipid metabolism is relevant in metabolic disorder research.
AGMO's role in ether lipid metabolism relates to cell membrane composition.
Yes, ongoing research uncovers AGMO's roles, implications, and potential applications.
AGMO's role in ether lipid metabolism may influence brain development.
Yes, AGMO deficiency can result in plasmalogen-related disorders.
AGMO's involvement in lipid metabolism relates to liver health and function.
Customer Reviews (5)
Write a reviewThe product’s ability to modulate signal transduction pathways significantly advanced our understanding.
We observed notable improvements in cellular morphology, attributed to the product’s effectiveness.
We achieved dependable results with the product, reinforcing the validity of our findings.
Thorough documentation streamlined the incorporation of the product into our protocols.
The product’s adaptability to various buffers contributed to its stable and consistent behavior.
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