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aquaporin
EntityQ623090· pop 32· linked from 393 articles

Also known as water channel, Aquaporin transporter, Aquaporin_transptr, IPR034294, aquaporins

Aquaporins, also called water channels, are channel proteins from a larger family of major intrinsic proteins that form pores in the membrane of biological cells, mainly facilitating transport of water between cells. The cell membranes of a variety of different bacteria, fungi, animal and plant cells contain aquaporins through which water can flow more rapidly into and out of the cell than by diffusing through the phospholipid bilayer. Aquaporins have six membrane-spanning α-helical domains with both carboxylic and amino terminals on the cytoplasmic side. Two hydrophobic loops contain conserve

Key facts

Protein family.Symbol
Aquaporin
Protein family.Name
Aquaporin
Protein family.image
Aquaporin-Sideview.png
Protein family.width
300px
Protein family.caption
Crystallographic structure of aquaporin 1 (AQP1) PDB
Protein family.Pfam
PF00230
Protein family.InterPro
IPR000425
Protein family.PROSITE
PDOC00193
Protein family.SCOP
1fx8
Protein family.TCDB
1.A.8
Protein family.OPM family
7
Protein family.OPM protein
2zz9

via Wikipedia infobox

Research

19,598 papers

via PubMed

Wikidata facts

Instance of
protein family
Show 2 more facts
Commons category
Aquaporins
facilitates flow of
water
Sources (2)

via Wikidata · CC0

~15 min read

Encyclopedic overview

15 sections
Contents
  • History
  • Discovery
  • Function
  • Structure
  • NPA motif
  • ar/R selectivity filter
  • Taxonomic distribution
  • In mammals
  • In plants
  • In Heteroconts
  • In other organisms
  • Clinical significance
  • See also
  • References
  • External links

Aquaporins, also called water channels, are channel proteins from a larger family of major intrinsic proteins that form pores in the membrane of biological cells, mainly facilitating transport of water between cells. The cell membranes of a variety of different bacteria, fungi, animal and plant cells contain aquaporins through which water can flow more rapidly into and out of the cell than by diffusing through the phospholipid bilayer. Aquaporins have six membrane-spanning α-helical domains with both carboxylic and amino terminals on the cytoplasmic side. Two hydrophobic loops contain conserved asparagine–proline–alanine ("NPA motif") which form a barrel surrounding a central pore-like region that contains additional protein density. Because aquaporins are usually always open and are prevalent in just about every cell type, this leads to a misconception that water readily passes through the cell membrane down its concentration gradient. Water can pass through the cell membrane through simple diffusion because it is a small molecule, and through osmosis, in cases where the concentration of water outside of the cell is greater than that of the inside. However, because water is a polar molecule this process of simple diffusion is relatively slow, and in tissues with high water permeability the majority of water passes through aquaporin.

The 2003 Nobel Prize in Chemistry was awarded jointly to Peter Agre for the discovery of aquaporins and Roderick MacKinnon for his work on the structure and mechanism of potassium channels.

Excerpted from Wikipedia’s “aquaporin” article, available under the CC BY-SA 4.0 licence.

Gallery (8)