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occludin
ProteinQ2013337· pop 10· linked from 53 articles

Also known as phosphatase 1, regulatory subunit 115, tight junction protein occludin, OCLN, uniprot:Q16625, Ocln

thumb|right|300px|Diagram of Tight junction. Occludin is a transmembrane protein that regulates the permeability of epithelial and endothelial barriers. It was first identified in epithelial cells as a 65 kDa integral plasma-membrane protein localized at the tight junctions. Together with Claudins, and zonula occludens-1 (ZO-1), occludin has been considered a staple of tight junctions, and although it was shown to regulate the formation, maintenance, and function of tight junctions, its precise mechanism of action remained elusive and most of its actions were initially attributed to conformati

Protein · UniProt

Occludin

Gene
OCLN
Organism
Homo sapiens (Human)
Length
522 aa
Molecular mass
59,144 Da
Evidence
1: Evidence at protein level

May play a role in the formation and regulation of the tight junction (TJ) paracellular permeability barrier. It is able to induce adhesion when expressed in cells lacking tight junctions

3D-structureAlternative splicingCell junctionCell membraneCoiled coilDisease variantDisulfide bondMembrane
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Swiss-Prot (reviewed) · via UniProt

Research

11,144 papers

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Wikidata facts

Image
Occludin.png
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HomoloGene ID
1905
genomic end
30577218
genomic start
30527715
cytogenetic location
2q12
Commons category
Occludin
Sources (8)

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~6 min read

Article

9 sections
Contents
  • Gene location
  • Protein structure
  • Function
  • Role in cancer
  • Disease linkage
  • Interactions
  • References
  • Further reading
  • External links

thumb|right|300px|Diagram of Tight junction. Occludin is a transmembrane protein that regulates the permeability of epithelial and endothelial barriers. It was first identified in epithelial cells as a 65 kDa integral plasma-membrane protein localized at the tight junctions. Together with Claudins, and zonula occludens-1 (ZO-1), occludin has been considered a staple of tight junctions, and although it was shown to regulate the formation, maintenance, and function of tight junctions, its precise mechanism of action remained elusive and most of its actions were initially attributed to conformational changes following selective phosphorylation, and its redox-sensitive dimerization. However, mounting evidence demonstrated that occludin is not only present in epithelial/endothelial cells, but is also expressed in large quantities in cells that do not have tight junctions but have very active metabolism: pericytes, neurons and astrocytes, oligodendrocytes, dendritic cells, monocytes/macrophages lymphocytes, and myocardium. Recent work, using molecular modeling, supported by biochemical and live-cell experiments in human cells demonstrated that occludin is a NADH oxidase that influences critical aspects of cell metabolism like glucose uptake, ATP production and gene expression. Furthermore, manipulation of occludin content in human cells is capable of influencing the expression of glucose transporters, and the activation of transcription factors like NFkB, and histone deacetylases like sirtuins, which proved capable of diminishing HIV replication rates in infected human macrophages under laboratory conditions.

==Gene location== In humans is encoded by the OCLN gene located on the long (q) arm of chromosome 5 at position q13.1. The canonical gene is 65,813 base pairs long, spanning base pairs 69,492,292 to 69,558,104. Its product is 522 amino acids long.

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