Human Gene SOX3 (ENST00000370536.5_6) from GENCODE V47lift37
  Description: SRY-box transcription factor 3 (from RefSeq NM_005634.3)
Gencode Transcript: ENST00000370536.5_6
Gencode Gene: ENSG00000134595.9_8
Transcript (Including UTRs)
   Position: hg19 chrX:139,585,150-139,587,234 Size: 2,085 Total Exon Count: 1 Strand: -
Coding Region
   Position: hg19 chrX:139,585,885-139,587,225 Size: 1,341 Coding Exon Count: 1 

Page IndexSequence and LinksUniProtKB CommentsPrimersMalaCardsCTD
Gene AllelesRNA-Seq ExpressionMicroarray ExpressionRNA StructureProtein StructureOther Species
GO AnnotationsmRNA DescriptionsPathwaysOther NamesGeneReviewsModel Information
Methods
Data last updated at UCSC: 2024-08-22 23:36:26

-  Sequence and Links to Tools and Databases
 
Genomic Sequence (chrX:139,585,150-139,587,234)mRNA (may differ from genome)Protein (446 aa)
Gene SorterGenome BrowserOther Species FASTAVisiGeneGene interactionsTable Schema
AlphaFoldBioGPSEnsemblEntrez GeneExonPrimerGeneCards
HGNCMalacardsMGIOMIMPubMedReactome
UniProtKBWikipediaBioGrid CRISPR DB

-  Comments and Description Text from UniProtKB
  ID: SOX3_HUMAN
DESCRIPTION: RecName: Full=Transcription factor SOX-3;
FUNCTION: Transcription factor required during the formation of the hypothalamo-pituitary axis. May function as a switch in neuronal development. Keeps neural cells undifferentiated by counteracting the activity of proneural proteins and suppresses neuronal differentiation. Required also within the pharyngeal epithelia for craniofacial morphogenesis. Controls a genetic switch in male development. Is necessary for initiating male sex determination by directing the development of supporting cell precursors (pre-Sertoli cells) as Sertoli rather than granulosa cells (By similarity).
SUBUNIT: Interacts with SOX2 and FGFR1 (By similarity).
SUBCELLULAR LOCATION: Nucleus.
DISEASE: Defects in SOX3 are a cause of panhypopituitarism X- linked (PHPX) [MIM:312000]. Affected individuals have absent infundibulum, anterior pituitary hypoplasia, and ectopic posterior pituitary.
DISEASE: Defects in SOX3 are the cause of mental retardation X- linked with isolated growth hormone deficiency (MRXGH) [MIM:300123].
DISEASE: Defects in SOX3 are the cause of 46,XX sex reversal type 3 (SRXX3) [MIM:300833]. A condition in which male gonads develop in a genetic female (female to male sex reversal). Note=Copy number variations (CNV) encompassing or in close proximity to SOX3 are responsible for XX male reversal. These variations include two duplications of approximately 123 kb and 85 kb, the former of which spans the entire SOX3 gene; a 343 kb deletion immediately upstream of SOX3 that is probably responsible of altered regulation (and not increased dosage) of SOX3; a large (approximately 6 Mb) duplication that encompasses SOX3 and at least 18 additional distally located genes. Its proximal breakpoint falls within the SOX3 regulatory region. This large rearrangement has been found in a patient with XX male reversal and a complex phenotype that also includes a scrotal hypoplasia, microcephaly, developmental delay, and growth retardation.
SIMILARITY: Contains 1 HMG box DNA-binding domain.
CAUTION: Was originally (PubMed:1614875) termed SOX-9.
WEB RESOURCE: Name=GeneReviews; URL="http://www.ncbi.nlm.nih.gov/sites/GeneTests/lab/gene/SOX3";

-  Primer design for this transcript
 

Primer3Plus can design qPCR Primers that straddle exon-exon-junctions, which amplify only cDNA, not genomic DNA.
Click here to load the transcript sequence and exon structure into Primer3Plus

Exonprimer can design one pair of Sanger sequencing primers around every exon, located in non-genic sequence.
Click here to open Exonprimer with this transcript

To design primers for a non-coding sequence, zoom to a region of interest and select from the drop-down menu: View > In External Tools > Primer3


-  MalaCards Disease Associations
  MalaCards Gene Search: SOX3
Diseases sorted by gene-association score: mental retardation, x-linked, with isolated growth hormone deficiency* (1270), panhypopituitarism, x-linked* (1019), pituitary hormone deficiency, combined, 2* (259), hypertrichosis, congenital generalized* (247), 46xx sex reversal 1* (247), mental retardation, x-linked, with growth hormone deficiency* (100), pituitary hypoplasia (25), growth hormone deficiency (24), borjeson-forssman-lehmann syndrome (17), hypopituitarism (14), agammaglobulinemia and isolated hormone deficiency (10), lambert-eaton myasthenic syndrome (9), isolated growth hormone deficiency (8), pituitary stalk interruption syndrome (8), septooptic dysplasia (7), hypertrichosis (5), 46 xy gonadal dysgenesis (5), neural tube defects (2)
* = Manually curated disease association

-  Comparative Toxicogenomics Database (CTD)
  The following chemicals interact with this gene

+  Common Gene Haplotype Alleles
  Press "+" in the title bar above to open this section.

-  RNA-Seq Expression Data from GTEx (53 Tissues, 570 Donors)
  Highest median expression: 2.59 RPKM in Testis
Total median expression: 13.09 RPKM



View in GTEx track of Genome Browser    View at GTEx portal     View GTEx Body Map

+  Microarray Expression Data
  Press "+" in the title bar above to open this section.

-  mRNA Secondary Structure of 3' and 5' UTRs
 
RegionFold EnergyBasesEnergy/Base
Display As
3' UTR -230.60735-0.314 Picture PostScript Text

The RNAfold program from the Vienna RNA Package is used to perform the secondary structure predictions and folding calculations. The estimated folding energy is in kcal/mol. The more negative the energy, the more secondary structure the RNA is likely to have.

-  Protein Domain and Structure Information
  InterPro Domains: Graphical view of domain structure
IPR009071 - HMG_superfamily
IPR022097 - TF_SOX

Pfam Domains:
PF00505 - HMG (high mobility group) box
PF09011 - HMG-box domain
PF12336 - SOX transcription factor

SCOP Domains:
47095 - HMG-box

ModBase Predicted Comparative 3D Structure on P41225
FrontTopSide
The pictures above may be empty if there is no ModBase structure for the protein. The ModBase structure frequently covers just a fragment of the protein. You may be asked to log onto ModBase the first time you click on the pictures. It is simplest after logging in to just click on the picture again to get to the specific info on that model.

-  Orthologous Genes in Other Species
  Orthologies between human, mouse, and rat are computed by taking the best BLASTP hit, and filtering out non-syntenic hits. For more distant species reciprocal-best BLASTP hits are used. Note that the absence of an ortholog in the table below may reflect incomplete annotations in the other species rather than a true absence of the orthologous gene.
MouseRatZebrafishD. melanogasterC. elegansS. cerevisiae
No orthologNo orthologNo orthologNo orthologNo orthologNo ortholog
Gene Details     
Gene Sorter     
  Ensembl   
      
      

-  Gene Ontology (GO) Annotations with Structured Vocabulary
  Molecular Function:
GO:0000979 RNA polymerase II core promoter sequence-specific DNA binding
GO:0000981 RNA polymerase II transcription factor activity, sequence-specific DNA binding
GO:0001106 RNA polymerase II transcription corepressor activity
GO:0003677 DNA binding

Biological Process:
GO:0000122 negative regulation of transcription from RNA polymerase II promoter
GO:0006351 transcription, DNA-templated
GO:0006355 regulation of transcription, DNA-templated
GO:0006357 regulation of transcription from RNA polymerase II promoter
GO:0007275 multicellular organism development
GO:0007417 central nervous system development
GO:0007423 sensory organ development
GO:0007530 sex determination
GO:0021854 hypothalamus development
GO:0021983 pituitary gland development
GO:0045665 negative regulation of neuron differentiation
GO:0060324 face development
GO:1903507 negative regulation of nucleic acid-templated transcription

Cellular Component:
GO:0005634 nucleus
GO:0005654 nucleoplasm


-  Descriptions from all associated GenBank mRNAs
  LF211496 - JP 2014500723-A/18999: Polycomb-Associated Non-Coding RNAs.
LF212811 - JP 2014500723-A/20314: Polycomb-Associated Non-Coding RNAs.
LF380477 - JP 2014500723-A/187980: Polycomb-Associated Non-Coding RNAs.
JD129626 - Sequence 110650 from Patent EP1572962.
LF380478 - JP 2014500723-A/187981: Polycomb-Associated Non-Coding RNAs.
JD204453 - Sequence 185477 from Patent EP1572962.
JD540118 - Sequence 521142 from Patent EP1572962.
JD226156 - Sequence 207180 from Patent EP1572962.
JD040051 - Sequence 21075 from Patent EP1572962.
BC093863 - Homo sapiens SRY (sex determining region Y)-box 3, mRNA (cDNA clone MGC:120898 IMAGE:7939708), complete cds.
BC093865 - Homo sapiens SRY (sex determining region Y)-box 3, mRNA (cDNA clone MGC:120900 IMAGE:7939710), complete cds.
JD420289 - Sequence 401313 from Patent EP1572962.
AK313820 - Homo sapiens cDNA, FLJ94441.
KJ905319 - Synthetic construct Homo sapiens clone ccsbBroadEn_14844 SOX3-like gene, encodes complete protein.
JD271294 - Sequence 252318 from Patent EP1572962.
X71137 - H.sapiens mRNA for soxB.
MA447073 - JP 2018138019-A/18999: Polycomb-Associated Non-Coding RNAs.
MA448388 - JP 2018138019-A/20314: Polycomb-Associated Non-Coding RNAs.
MA616054 - JP 2018138019-A/187980: Polycomb-Associated Non-Coding RNAs.
MA616055 - JP 2018138019-A/187981: Polycomb-Associated Non-Coding RNAs.

-  Biochemical and Signaling Pathways
  Reactome (by CSHL, EBI, and GO)

Protein P41225 (Reactome details) participates in the following event(s):

R-HSA-5626938 Beta-catenin binds SOX proteins
R-HSA-3769402 Deactivation of the beta-catenin transactivating complex
R-HSA-201681 TCF dependent signaling in response to WNT
R-HSA-195721 Signaling by WNT
R-HSA-162582 Signal Transduction

-  Other Names for This Gene
  Alternate Gene Symbols: ENST00000370536.1, ENST00000370536.2, ENST00000370536.3, ENST00000370536.4, NM_005634, P35714, P41225, Q5JWI3, Q9NP49, SOX3_HUMAN, uc318ill.1, uc318ill.2
UCSC ID: ENST00000370536.5_6
RefSeq Accession: NM_005634.3
Protein: P41225 (aka SOX3_HUMAN)

-  GeneReviews for This Gene
  GeneReviews article(s) related to gene SOX3:
xxms (Nonsyndromic 46,XX Testicular Disorders/Differences of Sex Development)

-  Gene Model Information
  Click here for a detailed description of the fields of the table above.

-  Methods, Credits, and Use Restrictions
  Click here for details on how this gene model was made and data restrictions if any.