Aox3l1
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Official Full Name
aldehyde oxidase 3-like 1
- Recombinant Proteins
- Protein Pre-coupled Magnetic Beads
- Mouse
- Rat
- HEK293
- Mammalian Cell
- His
- His (Fc)
- Avi
Species | Cat.# | Product name | Source (Host) | Tag | Protein Length | Price |
---|---|---|---|---|---|---|
Mouse | AOX3L1-1727M | Recombinant Mouse AOX3L1 Protein | Mammalian Cell | His | ||
Mouse | AOX3L1-593M | Recombinant Mouse AOX3L1 Protein, His (Fc)-Avi-tagged | HEK293 | His (Fc)-Avi | ||
Mouse | AOX3L1-593M-B | Recombinant Mouse AOX3L1 Protein Pre-coupled Magnetic Beads | HEK293 | |||
Rat | AOX3L1-696R | Recombinant Rat AOX3L1 Protein | Mammalian Cell | His | ||
Rat | AOX3L1-352R-B | Recombinant Rat AOX3L1 Protein Pre-coupled Magnetic Beads | HEK293 | |||
Rat | AOX3L1-352R | Recombinant Rat AOX3L1 Protein, His (Fc)-Avi-tagged | HEK293 | His (Fc)-Avi |
- Involved Pathway
- Protein Function
- Interacting Protein
Aox3l1 involved in several pathways and played different roles in them. We selected most pathways Aox3l1 participated on our site, such as Valine, leucine and isoleucine degradation, Tyrosine metabolism, Tryptophan metabolism, which may be useful for your reference. Also, other proteins which involved in the same pathway with Aox3l1 were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.
Pathway Name | Pathway Related Protein |
---|---|
Valine, leucine and isoleucine degradation | AUH;ACAA2;AOX2P;ACAD8;ACAA1;AOX4;OXCT1;ALDH7A1;AACS |
Tyrosine metabolism | MAOB;AOC2;TYRP1;MAOA;AOX4;HGD;ADH2-2;HPD;PNMT |
Tryptophan metabolism | IDO1;IL4I1;HADH;GCDH;KYNU;HADHAB;INMT;ALDH9A1;ALDH2.2 |
Vitamin B metabolism | PDXK;PDXP;PDXKB;PHOSPHO2;AOX3;PNPO;AOX2P;PSAT1;AOX4 |
Nicotinate and nicotinamide metabolism | NADK2;ENPP1;NNT;NT5C1B-RDH14;AOX1;NT5C3A;PNP;NADKD1;ENPP3 |
Retinol metabolism | CYP2C55;CYP26C1;DHRS9;RETSATL;UGT1A7;UGT2B7;AOX1;CYP2C18;LRAT |
Drug metabolism - cytochrome P | UGT1A9;GSTM7;AOX3;ALDH3A1;GSTM5;GSTP2;ALDH3B1;UGT1A4;UGT5G1 |
Metabolic pathways | CHPF2;DHRS3;ACER1;PTGS2;ATP5IB;POLR2B;CHIA.2;ATP5E;CKMA |
Jak-STAT signaling pathway | STAT3;LIFR;IFNGR2;HRASA;PIK3R3;OSM;GHR;EPO;IL5 |
Aox3l1 has several biochemical functions, for example, 2 iron, 2 sulfur cluster binding, NAD binding, aldehyde oxidase activity. Some of the functions are cooperated with other proteins, some of the functions could acted by Aox3l1 itself. We selected most functions Aox3l1 had, and list some proteins which have the same functions with Aox3l1. You can find most of the proteins on our site.
Function | Related Protein |
---|---|
2 iron, 2 sulfur cluster binding | AOX3L1;AIFM3;FECH;AOX1;GLRX2;FDX1L;AOX3;SDHB;RFESD |
NAD binding | LDHB;GRHPRB;GPD1;AHCY;HSD11B2;NDUFV1;NNT;HSD3B4;HPGD |
aldehyde oxidase activity | AOX1;AOX4;AOX3L1;ADH7;AOX3 |
catalytic activity | ECI2;GLULB;TIGARB;APOBEC2A;MDH1AA;MOSC2;PNP5A;PPM1E;SGSH |
electron carrier activity | AOC2;P4HA2;NDUFA12;ACAD11;TSTA3;CIAPIN1;SRD5A1;NDUFS2;HSD17B6 |
flavin adenine dinucleotide binding | DHCR24;NDOR1;SQLEA;DUS1L;GSR;KDM1B;DLDH;TXNRD3;ACOX1 |
iron ion binding | CYP2K19;HBAE1;HBBE3;CYP26C1;CYP46A1.3;CYP2A7;SC5DL;CYP2N13;TYW1B |
iron-sulfur cluster binding | PROZA;AOX3L1;NDUFS1;FXN;ABAT;EXO5;CMAH;RPS3;GLRX3 |
metal ion binding | ZNF319;NT5C2;DMRTA2;ATP1A1B;ZNRF3;ZNF143;ADIPOR1;ZFP689;WBP7 |
molecular_function | SOWAHCB;BLOC1S3;HEATR7B2;TMEM14A;TMEM102;MAGEA6;TRIM10;MXRA8;CHTOPA |
oxidoreductase activity | CYP2C37;IYD;CYP2C39;ALOX12E;DHRS3B;JMJD5;LOXL2A;DHRS3A;CYP2D26 |
oxidoreductase activity, acting on CH-OH group of donors | XDH;AOX1;AGPS;GULO;DHCR24;AOX3;AOX3L1;AOX4 |
Aox3l1 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 Aox3l1 here. Most of them are supplied by our site. Hope this information will be useful for your research of Aox3l1.
- Q&As
- Reviews
Q&As (15)
Ask a questionThe current study shows that the AOX3L1 recombinant protein does not cause a significant immune response, but individual differences should not be ignored.
No clinical trials have been found on AOX3L1 , but may be conducted in the future.
AOX3L1 recombinant protein may have innovative and unique advantages over existing therapies, but more clinical trials are needed to confirm this.
AOX3L1 has potential clinical application, which may be used to treat certain diseases or as a biomarker.
The preparation method of AOX3L1 generally involves gene engineering technology, including gene cloning, expression and purification.
AOX3L1 recombinant protein may be used to treat neurodegenerative diseases, fetal abnormalities, and some inflammatory diseases. The X3L1 recombinant protein has obvious interaction with other drugs.
AOX3L1 may be involved in a variety of mechanisms, such as inhibiting inflammatory response, promoting cell repair and regulating immune function.
Yes, the AOX3L1 can be used in tissue engineering to help promote cell growth and regeneration.
There have been no studies demonstrating serious side effects of AOX3L1 , but care needs to be taken to monitor patient responses during clinical use.
The production process of AOX3L1 recombinant protein is currently being continuously improved and optimized to ensure the quality and stability of production.
The AOX3L1 can be combined with the drug carrier to enhance the drug delivery effect and improve the therapeutic effect.
AOX3L1 bioactivity can be evaluated by a series of in vitro and in vivo experiments, such as cell proliferation, enzyme activity and function tests.
The safety and efficacy of AOX3L1 in children needs more research and clinical data.
AOX3L1 may play a role in the treatment of a variety of diseases, including cancer, cardiovascular disease, and neurological disorders.
AOX3L1 may play a role in inhibiting tumor growth and promoting tumor cell apoptosis in tumor therapy.
Customer Reviews (4)
Write a reviewThe background in the Western blot was very clean and showed good antibody specificity.
In the long-term storage process, the stability of this protein is very good, after a long time of storage, its performance remains unchanged, indicating that it has excellent storage stability.
I get consistent results from each experiment gives me more confidence in the results.
It has a wide range of applications and can be used in various biological experiments.
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