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ACOXL

  • Official Full Name

    acyl-Coenzyme A oxidase-like

  • Synonyms

    AV025673; 1200014P05Rik;
Species Cat.# Product name Source (Host) Tag Protein Length Price
Human ACOXL-905H Recombinant Human ACOXL Protein, His-tagged E.coli His
Mouse ACOXL-1211M Recombinant Mouse ACOXL Protein Mammalian Cell His
Mouse ACOXL-264M-B Recombinant Mouse ACOXL Protein Pre-coupled Magnetic Beads HEK293
Mouse ACOXL-264M Recombinant Mouse ACOXL Protein, His (Fc)-Avi-tagged HEK293 His (Fc)-Avi
  • Involved Pathway
  • Protein Function
  • Interacting Protein

ACOXL involved in several pathways and played different roles in them. We selected most pathways ACOXL participated on our site, such as , which may be useful for your reference. Also, other proteins which involved in the same pathway with ACOXL were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.

Pathway Name Pathway Related Protein

ACOXL has several biochemical functions, for example, acyl-CoA dehydrogenase activity, acyl-CoA oxidase activity, electron carrier activity. Some of the functions are cooperated with other proteins, some of the functions could acted by ACOXL itself. We selected most functions ACOXL had, and list some proteins which have the same functions with ACOXL. You can find most of the proteins on our site.

Function Related Protein
acyl-CoA dehydrogenase activityACADM;ACOX1;GCDHA;ACADVL;ACAD8;ACAD9;GCDHB;ACOX3;ACOXL
acyl-CoA oxidase activityACOX2;ACOXL;ACOX1
electron carrier activitySH3BGRL3;QDPR;GLDC;ACOXL;ACADS;AOX1;NDUFS3;ETFDH;GCDHA
fatty-acyl-CoA bindingACOXL;ACOX2;SCP2;ACADL;ACOX1;SOAT1;HADHA;ACADM;ACAD11
flavin adenine dinucleotide bindingNOS3;AIFM3;TXNRD1;NOS1;MTRR;SDHA;FOXRED2;XDH;CHDH
oxidoreductase activityRDH14A;CYP1A2;CHML;TXNRD3;HPDA;CYP27C1;CYP4V7;ETFA;GLUD1B
oxidoreductase activity, acting on the CH-CH group of donorsCOX15;TECR;ACOXL;DPYDB;LBR;TECRB;SRD5A2A;TECRL;GCDHA
oxidoreductase activity, acting on the CH-CH group of donors, with a flavin as acceptorGCDHA;ACADL;GCDHB;ETFA;ACOXL;IVD;ACAD11;ACADVL;ACOX2
palmitoyl-CoA oxidase activityACOX1;ACAA1A;ACOXL;ACADL;ACAA1
pristanoyl-CoA oxidase activityACOXL;ACOX3;ACOX2
very-long-chain fatty acyl-CoA oxidase activity

ACOXL 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 ACOXL here. Most of them are supplied by our site. Hope this information will be useful for your research of ACOXL.

  • Q&As
  • Reviews

Q&As (5)

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Can ACOXL protein be used in animal models? 03/26/2018

Animal models with genetic mutations in ACOXL can be used to study the physiological functions of the protein and the role it plays in metabolic diseases. Additionally, animal models can also be used to test potential drugs that target ACOXL in vivo.

Can ACOXL protein be used as a biomarker for diseases? 06/19/2017

There is limited research on the utility of ACOXL protein as a biomarker for diseases. However, studies have suggested that low ACOXL expression levels may be associated with increased risk of liver fibrosis and non-alcoholic fatty liver disease. More research is needed to determine the diagnostic and prognostic value of ACOXL as a biomarker.

What are the limitations of using ACOXL protein in research and clinical applications? 10/01/2016

One limitation is the limited amount of research on the role of ACOXL in metabolic diseases. Additionally, there is a need for more research to identify drugs that can target ACOXL without causing adverse effects.

What are the potential applications of ACOX3 protein in research and medicine? 02/10/2016

ACOX3 protein has been implicated in a variety of disease processes, including insulin resistance, obesity, and metabolic disorders. It may serve as a useful biomarker or drug target for the treatment of these and other conditions.

What are the limitations of using ACOX3 protein in research and clinical applications? 11/11/2015

One limitation is that ACOX3 protein is relatively poorly characterized compared to other enzymes involved in fatty acid metabolism, so further research is needed to fully understand its roles and mechanisms of action. Additionally, the available methods for measuring ACOX3 expression levels may not be sensitive or specific enough for certain applications, and genetic variations in the ACOX3 gene may impact its function in different populations.

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