Wnt signaling pathway

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Current revision (09:06, 22 January 2023) (edit) (undo)
 
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<StructureSection load='4f0a' size='340' side='right' caption='Crystal structure of XWnt8 (green) in complex with the cysteine-rich domain of Frizzled 8 (deep sky blue) (PDB code [[4f0a]])' scene='90/909987/Cv/1'>
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<StructureSection load='4f0a' size='340' side='right' caption='Glycosylated crystal structure of XWnt8 (green) in complex with the cysteine-rich domain of Frizzled 8 (deep sky blue) and palmitoleic acid (PDB code [[4f0a]])' scene='90/909987/Cv/1'>
The Wnt signaling pathways are a group of signal transduction pathways which begin with proteins that pass signals into a cell through cell surface receptors. The name Wnt is a portmanteau created from the names Wingless and Int-1. Wnt signaling pathways use either nearby cell-cell communication (paracrine) or same-cell communication (autocrine). They are highly evolutionarily conserved in animals, which means they are similar across animal species from fruit flies to humans.
The Wnt signaling pathways are a group of signal transduction pathways which begin with proteins that pass signals into a cell through cell surface receptors. The name Wnt is a portmanteau created from the names Wingless and Int-1. Wnt signaling pathways use either nearby cell-cell communication (paracrine) or same-cell communication (autocrine). They are highly evolutionarily conserved in animals, which means they are similar across animal species from fruit flies to humans.

Current revision

Glycosylated crystal structure of XWnt8 (green) in complex with the cysteine-rich domain of Frizzled 8 (deep sky blue) and palmitoleic acid (PDB code 4f0a)

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References

Proteopedia Page Contributors and Editors (what is this?)

Alexander Berchansky, Michal Harel

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