Recombinant Human DLL3 protein (Tagged)
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Recombinant Human DLL3 protein (Tagged) is a Human Fragment protein, in the 27 to 492 aa range, expressed in Escherichia coli, with >90%, suitable for SDS-PAGE.
View Alternative Names
Delta-like protein 3, Drosophila Delta homolog 3, Delta3, DLL3
- SDS-PAGE
Supplier Data
SDS-PAGE - Recombinant Human DLL3 protein (Tagged) (AB226231)
(Tris-Glycine gel) Discontinuous SDS-PAGE (reduced) with 5% enrichment gel and 15% separation gel.
Reactivity data
Sequence info
Properties and storage information
Shipped at conditions
Appropriate short-term storage conditions
Appropriate long-term storage conditions
Aliquoting information
Storage information
Supplementary information
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
DLL3 functions mainly in the modulation of the Notch signaling pathway. It does not activate this pathway but acts as an inhibitor blocking Notch ligand activation on adjacent cells. DLL3's role involves binding directly to Notch receptors altering cellular differentiation and growth processes. Despite being related to the Delta/Serrate/LAG-2 family DLL3 exhibits unique characteristics in its interactions forming part of a regulatory complex different from its family members.
Pathways
DLL3 engages importantly in the Notch signaling pathway affecting important cellular communications that regulate development and differentiation. Its interaction with proteins of the Notch family specifically the Notch receptors highlights its inhibitory role. Additionally DLL3 intersects with the Wnt signaling pathway though indirect influencing its output by modulating availability of pathway regulators.
Specifications
Form
Liquid
General info
Function
Inhibits primary neurogenesis. May be required to divert neurons along a specific differentiation pathway. Plays a role in the formation of somite boundaries during segmentation of the paraxial mesoderm (By similarity).
Post-translational modifications
Ubiquitinated by MIB (MIB1 or MIB2), leading to its endocytosis and subsequent degradation.
Target data
Product promise
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