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GATA5

From Wikipedia, the free encyclopedia
Protein-coding gene in the species Homo sapiens
GATA5
Identifiers
AliasesGATA5, GATAS, bB379O24.1, GATA binding protein 5, CHTD5
External IDsOMIM:611496;MGI:109497;HomoloGene:32031;GeneCards:GATA5;OMA:GATA5 - orthologs
Gene location (Human)
Chromosome 20 (human)
Chr.Chromosome 20 (human)[1]
Chromosome 20 (human)
Genomic location for GATA5
Genomic location for GATA5
Band20q13.33Start62,463,497bp[1]
End62,475,995bp[1]
Gene location (Mouse)
Chromosome 2 (mouse)
Chr.Chromosome 2 (mouse)[2]
Chromosome 2 (mouse)
Genomic location for GATA5
Genomic location for GATA5
Band2 H4|2 102.85 cMStart179,966,926bp[2]
End179,976,492bp[2]
RNA expression pattern
Bgee
HumanMouse (ortholog)
Top expressed in
  • mucosa of ileum

  • left uterine tube

  • jejunal mucosa

  • duodenum

  • right testis

  • left testis

  • body of stomach

  • right adrenal cortex

  • urinary bladder

  • fundus
Top expressed in
  • jejunum

  • pyloric antrum

  • epithelium of stomach

  • duodenum

  • crypt of lieberkuhn of small intestine

  • ileum

  • mucous cell of stomach

  • vasculature of trunk

  • lung parenchyma

  • intestinal epithelium
More reference expression data
BioGPS
n/a
Gene ontology
Molecular function
Cellular component
Biological process
Sources:Amigo /QuickGO
Orthologs
SpeciesHumanMouse
Entrez

140628

14464

Ensembl

ENSG00000130700

ENSMUSG00000015627

UniProt

Q9BWX5

P97489

RefSeq (mRNA)

NM_080473

NM_008093

RefSeq (protein)

NP_536721

NP_032119

Location (UCSC)Chr 20: 62.46 – 62.48 MbChr 2: 179.97 – 179.98 Mb
PubMed search[3][4]
Wikidata
View/Edit HumanView/Edit Mouse

Transcription factor GATA-5 is aprotein that in humans is encoded by theGATA5gene.[5][6]

Function

[edit]

The protein encoded by this gene is a transcription factor that contains two GATA-type zinc fingers. The encoded protein is known to bind to hepatocyte nuclear factor-1alpha (HNF-1alpha), and this interaction is essential for cooperative activation of the intestinal lactase-phlorizin hydrolase promoter. In other organisms, similar proteins may be involved in the establishment of cardiac smooth muscle cell diversity.[6]

Role in development

[edit]

Gata5 is a transcription factor. Gata5 regulates the proper development of the heart. Early in embryo development, Gata5 helps in making sure that there are enough heart muscle precursor cells produced to differentiate into the final myocardial cells. It also regulates other genes that are crucial to successful heart development.[7] As pregnancy progresses, Gata 5 is involved in the specification of the heart tissue that becomes the ventricles. Problems can arise when Gata5 is overexpressed. This overexpression can lead toectopic foci. Ectopic foci are also known as ectopic pacemakers. They are bundles of cells that can cause cardiac pacing that are located in places in the heart where they're not supposed to be. These cells can become excited before the heart is supposed to be excited. This causes the heart to beat and thus contract before it should. Oftentimes, this is not a big deal and the heart naturally reverts to its normal pacing. However, if it's caused by problems with development in the heart – if Gata5 did not express properly in the embryo- then this can lead to constant ectopic foci problems. These problems include tachycardia (the heart beating too fast),bradycardia (the heart beating too slow), or ventricular fibrillation[8] which is a serious condition where the ventricles of the heart aren't pumping consistently and can't get blood out to the body.

See also

[edit]

References

[edit]
  1. ^abcGRCh38: Ensembl release 89: ENSG00000130700Ensembl, May 2017
  2. ^abcGRCm38: Ensembl release 89: ENSMUSG00000015627Ensembl, May 2017
  3. ^"Human PubMed Reference:".National Center for Biotechnology Information, U.S. National Library of Medicine.
  4. ^"Mouse PubMed Reference:".National Center for Biotechnology Information, U.S. National Library of Medicine.
  5. ^Gao X, Sedgwick T, Shi YB, Evans T (May 1998)."Distinct functions are implicated for the GATA-4, -5, and -6 transcription factors in the regulation of intestine epithelial cell differentiation".Molecular and Cellular Biology.18 (5):2901–11.doi:10.1128/mcb.18.5.2901.PMC 110669.PMID 9566909.
  6. ^ab"Entrez Gene: GATA5 GATA binding protein 5".
  7. ^Reiter JF, Alexander J, Rodaway A, Yelon D, Patient R, Holder N, Stainier DY (November 1999)."Gata5 is required for the development of the heart and endoderm in zebrafish".Genes & Development.13 (22):2983–95.doi:10.1101/gad.13.22.2983.PMC 317161.PMID 10580005.
  8. ^"Ventricular fibrillation". Mayo Clinic.

Further reading

[edit]

External links

[edit]

This article incorporates text from theUnited States National Library of Medicine, which is in thepublic domain.


(1) Basic domains
(1.1) Basicleucine zipper (bZIP)
(1.2) Basic helix-loop-helix (bHLH)
Group A
Group B
Group C
bHLH-PAS
Group D
Group E
Group F
bHLH-COE
(1.3)bHLH-ZIP
(1.4) NF-1
(1.5) RF-X
(1.6) Basic helix-span-helix (bHSH)
(2)Zinc finger DNA-binding domains
(2.1)Nuclear receptor(Cys4)
subfamily 1
subfamily 2
subfamily 3
subfamily 4
subfamily 5
subfamily 6
subfamily 0
(2.2) Other Cys4
(2.3) Cys2His2
(2.4) Cys6
(2.5) Alternating composition
(2.6) WRKY
(3.1)Homeodomain
Antennapedia
ANTP class
protoHOX
Hox-like
metaHOX
NK-like
other
(3.2) Paired box
(3.3)Fork head /winged helix
(3.4)Heat shock factors
(3.5) Tryptophan clusters
(3.6) TEA domain
  • transcriptional enhancer factor
(4)β-Scaffold factors with minor groove contacts
(4.1)Rel homology region
(4.2)STAT
(4.3) p53-like
(4.4)MADS box
(4.6)TATA-binding proteins
(4.7)High-mobility group
(4.9) Grainyhead
(4.10) Cold-shock domain
(4.11) Runt
(0) Other transcription factors
(0.2) HMGI(Y)
(0.3)Pocket domain
(0.5)AP-2/EREBP-related factors
(0.6) Miscellaneous


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