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EC Number
BRENDA No.
Title
Journal
Volume
Pages
Year
Organism
PubMed ID
2.3.1.250
757177
An in vitro fatty acylation assay reveals a mechanism for Wnt recognition by the acyltransferase porcupine
J. Biol. Chem.
292
13507-13513
2017
Mus musculus
28655768
2.3.1.250
756670
Divergent effects of porcupine and Wntless on WNT1 trafficking, secretion, and signaling
Exp. Cell Res.
347
171-183
2016
Mus musculus
27492485
2.3.1.250
757228
In vitro reconstitution of Wnt acylation reveals structural determinants of substrate recognition by the acyltransferase human porcupine
J. Biol. Chem.
294
231-245
2019
Homo sapiens
30420431
2.3.1.250
733873
Identification of the WNT1 residues required for palmitoylation by Porcupine
FEBS Lett.
588
4815-4824
2014
Homo sapiens
25451226
2.3.1.250
733695
Monounsaturated fatty acid modification of Wnt p+rotein: its role in Wnt secretion
Dev. Cell
11
791-801
2006
Drosophila melanogaster
17141155
2.3.1.250
733695
Monounsaturated fatty acid modification of Wnt p+rotein: its role in Wnt secretion
Dev. Cell
11
791-801
2006
Mus musculus
17141155
2.3.1.250
734754
Mutations in X-linked PORCN, a putative regulator of Wnt signaling, cause focal dermal hypoplasia
Nat. Genet.
39
836-838
2007
Homo sapiens
17546030
2.3.1.250
733699
Porcupine-mediated lipid-modification regulates the activity and distribution of Wnt proteins in the chick neural tube
Development
134
3339-3348
2007
Gallus gallus
17720697
2.3.1.250
733699
Porcupine-mediated lipid-modification regulates the activity and distribution of Wnt proteins in the chick neural tube
Development
134
3339-3348
2007
Homo sapiens
17720697
2.3.1.250
733699
Porcupine-mediated lipid-modification regulates the activity and distribution of Wnt proteins in the chick neural tube
Development
134
3339-3348
2007
Mus musculus
17720697
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