SLC25A10

  • Official Full Name

    solute carrier family 25 (mitochondrial carrier, dicarboxylate transporter), member 10
  • Overview

    Mitochondrial dicarboxylate carrier is a protein that in humans is encoded by the SLC25A10 gene.
  • Synonyms

    SLC25A10;solute carrier family 25 (mitochondrial carrier, dicarboxylate transporter), member 10;mitochondrial dicarboxylate carrier;DIC;Solute carrier family 25 member 10;dicarboxylate ion carrier;solute carrier family 25 (mitochondrial carrier;adenine nucleotide translocator), member 10

Recombinant Proteins

  • Human
  • Zebrafish
  • Rhesus macaque
  • Mus musculus
  • Mouse
  • E.coli
  • Mammalian Cells
  • HEK293
  • His
  • Non
  • GST
  • Avi
  • Fc
Cat.# Product name Source (Host) Species Tag Protein Length Price
SLC25A10-2715H Recombinant Human SLC25A10, His-tagged E.coli Human His 1-296aa
SLC25A10-11389Z Recombinant Zebrafish SLC25A10 Mammalian Cells Zebrafish His
SLC25A10-4240R Recombinant Rhesus monkey SLC25A10 Protein, His-tagged Mammalian Cells Rhesus macaque His
SLC25A10-1785HCL Recombinant Human SLC25A10 293 Cell Lysate HEK293 Human Non
RFL3016MF Recombinant Full Length Mouse Mitochondrial Dicarboxylate Carrier(Slc25A10) Protein, His-Tagged E.coli Mus musculus His Full L. Full Length (1-287)
RFL36069HF Recombinant Full Length Human Mitochondrial Dicarboxylate Carrier(Slc25A10) Protein, His-Tagged E.coli Human His Full L. Full Length (1-287)
Slc25a10-2064M Recombinant Mouse Slc25a10 Protein, His&GST-tagged E.coli Mouse GST&His Ser7-Thr287
SLC25A10-2065H Recombinant Human SLC25A10 Protein, His&GST-tagged E.coli Human GST&His Ser8-Ser287
SLC25A10-4056R Recombinant Rhesus Macaque SLC25A10 Protein, His (Fc)-Avi-tagged HEK293 Rhesus macaque Avi&Fc&His
SLC25A10-4056R-B Recombinant Rhesus Macaque SLC25A10 Protein Pre-coupled Magnetic Beads HEK293 Rhesus macaque

    Involved Pathway

    SLC25A10 involved in several pathways and played different roles in them. We selected most pathways SLC25A10 participated on our site, such as Degradation of cysteine and homocysteine,Gluconeogenesis,Glucose metabolism, which may be useful for your reference. Also, other proteins which involved in the same pathway with SLC25A10 were listed below. Creative BioMart supplied nearly all the proteins listed, you can search them on our site.

    Pathway Name Pathway Related Protein
    Organic anion transporters SLC17A1,SLC17A7A,SLC5A8
    Glucose metabolism SLC25A13,SLC25A11,EPM2A,SLC25A12,GYG1A,SLC25A1,AGL,GYG2,NHLRC1,GYG1
    Proximal tubule bicarbonate reclamation GLS2,GLUD1,CA4,PCK2,GLUD2,ATP1B3,FXYD2,SLC4A4,SLC9A3,ATP1A4
    Metabolism of amino acids and derivatives ACMSD,CKMB,CKMT2,SLC6A7,DBH,AFMID,AZIN1,ALDH9A1A.2,CTHL,CRYM
    Degradation of cysteine and homocysteine CDO1,CTHL,CTH
    Metabolism COX10,SULT1C2,THEM5,PCBD1,ALOX5B.3,COX5B,ACOT7,APOA4A,SLC2A3,OMD
    Gluconeogenesis SLC25A1A,SLC25A12,SLC25A1,SLC25A13,SLC25A11,GPR19
    Metabolism of carbohydrates OXSR1,SLC25A13,NHLRC1,ST3GAL3A,SLC35B2,CHST14,SLC26A1,B3GNT3,GCKR,FMODA

    Protein Function

    SLC25A10 has several biochemical functions, for example, dicarboxylic acid transmembrane transporter activity,protein binding. Some of the functions are cooperated with other proteins, some of the functions could acted by SLC25A10 itself. We selected most functions SLC25A10 had, and list some proteins which have the same functions with SLC25A10. You can find most of the proteins on our site.

    Function Related Protein
    protein binding PIN4,RBM15,NFIL3,NLRC4,USP4,SETMAR,CDK6,SPRR2A,STIM1,OIT3

    Interacting Protein

    SLC25A10 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 SLC25A10 here. Most of them are supplied by our site. Hope this information will be useful for your research of SLC25A10.

    MDFI;KRTAP5-9;KRTAP10-8;KRT40;NOTCH2NL

    Resources

    References

    • Benipal, B; Lash, LH; et al. Modulation of mitochondrial glutathione status and cellular energetics in primary cultures of proximal tubular cells from remnant kidney of uninephrectomized rats. BIOCHEMICAL PHARMACOLOGY 85:1379-1388(2013).
    • Lind, PA; Macgregor, S; et al. Association Between In Vivo Alcohol Metabolism and Genetic Variation in Pathways that Metabolize the Carbon Skeleton of Ethanol and NADH Reoxidation in the Alcohol Challenge Twin Study. ALCOHOLISM-CLINICAL AND EXPERIMENTAL RESEARCH 36:2074-2085(2012).

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