Seroatlas · Human Serome Atlas

MFSD10

Major facilitator superfamily domain-containing protein 10

Also known as: IT10C3, MFS10_HUMAN, TETRAN

Cross-references: UniProt · Ensembl · Human Protein Atlas · GeneCards · NCBI Gene

Protein identityUniProt · HPA

UniProt accession
Q14728
Gene
MFSD10
Ensembl
ENSG00000109736
Chromosome
4
Canonical length
455 aa
Protein class
Predicted membrane proteins
Subcellular location
Nucleoplasm,Nuclear membrane

OverviewNCBI Gene

This gene encodes a member of the major facilitator superfamily of transporter proteins. The encoded protein likely functions in efflux of organic anions, including the non-steroidal anti-inflammatory drugs indomethacin and diclofenac. Alternatively spliced transcript variants have been described. [provided by RefSeq, Mar 2009]

Canonical amino-acid sequenceUniProt

455 residues, UniProt reviewed canonical sequence.

>Q14728|MFSD10
     1  MGWGGGGGCT PRPPIHQQPP ERRVVTVVFL GLLLDLLAFT LLLPLLPGLL ESHGRAHDPL
    61  YGSWQGGVDW FATAIGMPVE KRYNSVLFGG LIGSAFSVLQ FLCAPLTGAT SDCLGRRPVM
   121  LLCLMGVATS YAVWATSRSF AAFLASRLIG GISKGNVSLS TAIVADLGSP LARSQGMAVI
   181  GVAFSLGFTL GPMLGASLPL EMAPWFALLF AASDLLFIFC FLPETLPLEK RAPSIALGFR
   241  DAADLLSPLA LLRFSAVARG QDPPSGDRLS SLRRLGLVYF LYLFLFSGLE YTLSFLTHQR
   301  FQFSSLQQGK MFFLIGLTMA TIQGAYARRI HPGGEVAAVK RALLLLVPAF LLIGWGRSLP
   361  VLGLGLLLYS FAAAVVVPCL SSVVAGYGSP GQKGTVMGTL RSLGALARAA GPLVAASVYW
   421  LAGAQACFTT WSGLFLLPFF LLQKLSYPAQ TLKAE

LocalizationUniProt · AlphaFold · HPA

Whether an antibody against MFSD10 can act on the native protein depends on physical access: surface and secreted proteins are reachable by circulating antibodies, intracellular proteins usually are not.

Antibody reachability
Cell surface
Secreted
No
Transmembrane segments
11
Mean surface accessibility (rSASA)
0.24
Highest tissue expression
62 nTPM

Expression across tissuesHPA

Tissue

  • bone marrow: 62 nTPM
  • cerebellum: 41 nTPM
  • ovary: 40 nTPM
  • cervix: 38 nTPM
  • thyroid gland: 36 nTPM
  • lung: 36 nTPM

Single-cell type

  • extravillous trophoblasts: 134 nCPM
  • respiratory ciliated cells: 97 nCPM
  • syncytiotrophoblasts: 97 nCPM
  • breast myoepithelial cells: 90 nCPM
  • urothelial cells: 86 nCPM
  • fallopian tube ciliated cells: 86 nCPM

Immune cell

  • eosinophil: 118 nTPM
  • non-classical monocyte: 96 nTPM
  • memory CD8 T-cell: 82 nTPM
  • gdT-cell: 73 nTPM
  • intermediate monocyte: 71 nTPM
  • basophil: 65 nTPM

Brain region

  • choroid plexus: 34 nTPM
  • thalamus: 31 nTPM
  • medulla oblongata: 29 nTPM
  • cerebral cortex: 27 nTPM
  • amygdala: 27 nTPM
  • hippocampal formation: 25 nTPM

Genetic constraint and essentialitygnomAD · DepMap

Does the body need this protein intact? Low LOEUF or a strong DepMap dependency means loss or blockade of the protein is likely to be felt.

gnomAD LOEUF (loss-of-function intolerance)
1.31
gnomAD pLI
0
gnomAD missense Z
-0.75
DepMap mean gene effect
-0.02
DepMap dependency class
selective

OntologyGO

Biological processes

Molecular functions

Cellular components

Protein domainsUniProt · Pfam · InterPro

KeywordsUniProt

Antibody and autoantibody relevanceSeroatlas analysis

Seroatlas reads MFSD10 as an antibody target. Whether an autoantibody or antibody against MFSD10 could matter depends on whether native MFSD10 is physically reachable, whether the body needs it intact, and whether it acts in a disease-relevant tissue.

MFSD10 is annotated at the cell surface, where native MFSD10 is exposed to circulating antibodies and is a prime autoantibody target that could block, deplete, or overstimulate it.

Annotation status

The present source text does not explicitly label MFSD10 as an autoantigen. Seroatlas presents hypothesis context only and does not manufacture a known-serology claim.

Canonical record: https://seroatlas.com/gene/MFSD10. Study-independent annotations aggregated from UniProt, Human Protein Atlas, PubMed, IEDB, Pfam, InterPro, Gene Ontology, AlphaFold, gnomAD, DepMap, ClinVar, TCGA. Catalog release seroatlas-reviewed-human-uniprot-20260313.

Seroatlas is the reference for exploring autoantibody and antibody serology at the human-protein level: the autoreactome and human serome, multiplex serology (HuProt, HuScan, VirScan, PhIP-Seq).

Loading the interactive Seroatlas protein explorer...