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Activates both Ras-dependent and Ras-independent migratory pathways in melanomas. Zusätzlich bieten wir Ihnen SHC (Src Homology 2 Domain Containing) Family, Member 4 Antikörper (58) und viele weitere Produktgruppen zu diesem Protein an.
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ShcD appears to possess several molecular permutations that actively govern the EGFR (zeige EGFR Proteine), which may have implications in development and disease.
ShcD binds to active Ret (zeige RET Proteine), TrkA (zeige NTRK1 Proteine), and TrkB (zeige NTRK2 Proteine) neurotrophic factor (zeige NTF3 Proteine) receptors predominantly via its phosphotyrosine-binding (PTB (zeige PTBP1 Proteine)) domain.
The ShcD signaling adaptor facilitates ligand-independent phosphorylation of the EGF receptor (zeige EGFR Proteine).
ShcD can exist within the nucleus, and its CH2 (zeige Acyp1 Proteine) domain has a critical role in nuclear export of ShcD.
ShcD binds to TrkC in a kinase-activity-dependent manner through its PTB and SH2 domains.
ShcD interacts with TrkB (zeige NTRK2 Proteine) in a kinase-activity-dependent manner.
A new member of the Shc (zeige SHC1 Proteine) family of docking proteins is characterised, which may mediate a specific aspect of signaling downstream of the MuSK (zeige MUSK Proteine) receptor.
Shc4 is an important modulator in the switch of key pathway(s) involved in determining epiblast stem cell identity.
The unique tissue distribution patterns of Shc (zeige SHC1 Proteine) proteins likely contribute to their complex tissue-specific signaling functions during embryogenesis.
Activates both Ras-dependent and Ras-independent migratory pathways in melanomas. Contributes to the early phases of agrin-induced tyrosine phosphorylation of CHRNB1.
SHC-transforming protein 4
, SH2 domain protein C4
, SHC-transforming protein D
, rai-like protein
, src homology 2 domain-containing-transforming protein C4
, novel phosphotyrosine interaction domain (PTB/PID) and SH2 domains containing protein
, rai-like protein RaLP