Wikiwand AI

Juno (protein)

Protein-coding gene in the species Homo sapiens From Wikipedia, the free encyclopedia

Juno also known as folate receptor 4, folate receptor delta or IZUMO1R is a protein that in humans is encoded by the FOLR4 gene.[5] Juno is a member of the folate receptor family[6] and is GPI-anchored to the plasmalemma of the mammalian egg cell that recognizes its sperm-riding counterpart, IZUMO1, and facilitates fertilization. The protein was named after Juno, the Roman goddess of fertility and marriage.[7]

AliasesIZUMO1R, Folbp3, JUNO, FOLR4, Juno (protein), IZUMO1 receptor, JUNO, FR-delta
PDBOrtholog search: PDBe RCSB
Quick facts IZUMO1R, Identifiers ...
IZUMO1R
Identifiers
AliasesIZUMO1R, Folbp3, JUNO, FOLR4, Juno (protein), IZUMO1 receptor, JUNO, FR-delta
External IDsOMIM: 615737; MGI: 1929185; GeneCards: IZUMO1R
Available structures
PDBOrtholog search: PDBe RCSB
Orthologs
DatabasesNCBI: entry; OMA: entry
SpeciesHumanMouse
Entrez
Ensembl
UniProt
RefSeq (mRNA)

NM_001080486
NM_001199206
NM_001393610

NM_022888
NM_176807

RefSeq (protein)

NP_001186135

NP_075026
NP_789777

Location (UCSC)Chr 11: 94.3 – 94.31 MbChr 9: 14.8 – 14.82 Mb
PubMed search[3][4]
Wikidata
View/Edit HumanView/Edit Mouse
Close

After the initial fertilisation stage, a sudden decrease of Juno from the egg cell surface occurs and Juno becomes virtually undetectable after just 40 minutes.[7][8] Still, after fertilization via intracytoplasmic sperm injection, the egg cell does not lose cell-surface expression of Juno, which suggests that Juno contributes to the prevention of polyspermy.[8] Mice lacking Juno on the surface of their egg cells are infertile because their egg cells do not fuse with normal sperm, demonstrating Juno's essential role in the fertility of female mice.[7]

Discovery

Based on a sequence homology search for genes relate to the folate receptor, the gene for folate receptor 4 was first identified in mice and humans in 2000 at the University of Nebraska–Lincoln.[6]

In 2014, the function of folate receptor 4 was discovered by the researchers of the Wellcome Trust Sanger Institute who also proposed that the protein be renamed as Juno.[8] Juno was initially found in murine oocytes, but its interaction with Izumo was subsequently found in other mammalian species, including humans.[8][9][10][11] Being previously elusive, Juno was discovered nine years after its male counterpart, Izumo1.[7]

3D structure

The crystal structure of Juno (PDB: 5EJN) was reported in February 2016 by researchers at Karolinska Institutet, in collaboration with the group at the Wellcome Trust Sanger Institute.[12]

References

Related Articles

Timelines

Top Qs

Fact Checks