Søgeresultater - Cheryll Sanchez-Irizarry
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Notch Subunit Heterodimerization and Prevention of Ligand-Independent Proteolytic Activation Depend, Respectively, on a Novel Domain and the LNR Repeats af Cheryll Sanchez-Irizarry, Andrea C. Carpenter, Andrew P. Weng, Warren S. Pear, Jon C. Aster, Stephen C. Blacklow
Udgivet 2004Artigo -
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Effects of S1 Cleavage on the Structure, Surface Export, and Signaling Activity of Human Notch1 and Notch2 af Wendy R. Gordon, Didem Vardar‐Ulu, Sarah L’Heureux, Todd Ashworth, Michael Malecki, Cheryll Sanchez-Irizarry, Debbie G. McArthur, Gavin Histen, Jennifer Mitchell, Jon C. Aster, Stephen C. Blacklow
Udgivet 2009Artigo
Søgeredskaber:
Relaterede emner
Biochemistry
Biology
Cell biology
Receptor
Signal transduction
Extracellular
Gene
Ligand (biochemistry)
Notch signaling pathway
Protein subunit
Transmembrane domain
Transmembrane protein
Cell signaling
Chemistry
Cleavage (geology)
Ectodomain
Enzyme
Fracture (geology)
Furin
Matrix metalloproteinase
Metalloproteinase
Mutation
Notch proteins
Paleontology
Transcription factor