MINOPOLI, GIUSEPPINA
MINOPOLI, GIUSEPPINA
DIPARTIMENTO DI MEDICINA MOLECOLARE E BIOTECNOLOGIE MEDICHE
The Fe65 adaptor protein interacts through its PID1 domain with the transcription factor CP2/LSF/LBP1
1998 Zambrano, N; Minopoli, G; DE CANDIA, P; Russo, Tommaso
Platelet-derived growth factor induces the (beta)- (gamma)-secretase-mediated cleavage of alzheimer's amyloid precursor protein through a Src-Rac-dependent pathway
2003 Gianni, D.; Zambrano, N.; Bimonte, M.; Minopoli, G.; Mercken, L.; Talamo, F.; Scaloni, A.; Russo, Tommaso
Stem cell factor is localized in, released from, and cleaved by human mast cells
1999 De, Paulis; Minopoli, G.; Arbustini, E.; DE CRESCENZO, G.; DAL PIAZ, F.; Pucci, P.; Russo, Tommaso; Marone, G.
The Fe65 adaptor protein interacts through its PID1 domain with the transcription factor CP2/LSF/LBP1
1998 Zambrano, Nicola; Minopoli, G.; DE CANDIA, P.; Russo, T.
Platelet-Derived Growth Factor Induces the Beta- Gamma-Secretase Mediated Cleavage of Alzheimer's Amyloid Precursor Protein through a Src-Rac-Dependent Pathway
2003 Gianni, D.; Zambrano, Nicola; Bimonte, M.; Minopoli, G.; Mercken, L.; Talamo, F.; Scaloni, A.; Russo, T.
Fe65, a Ligand of the Alzheimer's beta-Amyloid Precursor Protein, Blocks Cell Cycle Progression by Down-regulating Thymidylate Synthase Expression
2002 Bruni, P.; Minopoli, G.; Brancaccio, T.; Napolitano, M.; Faraonio, Raffaella; Zambrano, Nicola; Hansen, U.; Russo, T.
Fe65L2: a new member of the Fe65 protein family interacting with the intracellular domain of the Alzheimer’s b-amyloid precursor protein
1998 Duilio, A; Faraonio, Raffaella; Minopoli, G; Zambrano, Nicola; Russo, Tommaso
Fe65 and the protein network centered around the cytosolic domain of the Alzheimer’s b-amyloid precursor protein
1998 Russo, T.; Faraonio, Raffaella; Minopoli, G.; DE CANDIA P., DE RENZIS S.; Zambrano, Nicola
The beta-amyloid precursor protein APP functions as a cytosolic anchoring site that prevents Fe65 nuclear translocation.
2001 Minopoli, G.; DE CANDIA, P.; Bonetti, A.; Faraonio, Raffaella; Zambrano, Nicola; Russo, Tommaso
Fe65, a ligand of the Alzheimer's beta-amyloid precursor protein, blocks cell cycle progression by down-regulating thymidylate synthase expression
2002 Bruni, P; Minopoli, G; Brancaccio, T; Napolitano, M; Faraonio, Raffaella; Zambrano, N; Hansen, U. AND RUSSO T.
Fe65L2: a new member of the Fe65 protein family interacting with the intracellular domain of the Alzheimer's b-amyloid precursor protein
1998 Duilio, A; Faraonio, Raffaella; Minopoli, Giuseppina; Zambrano, N; Russo, T.
The oligomeric complexes involving FE65 and APP control cell cycle progression through the transcriptional regulation of thymidilate synthase gene
2002 P., Bruni; Minopoli, Giuseppina; D., Gianni; N. Z. a. m. b. r. a. n., O.
Interaction of the phosphotyrosine interaction/phosphotyrosine binding-related domains of Fe65 with wild-type and mutant Alzheimer's beta-amyloid precursor proteins
1997 Zambrano, Nicola; J. D., Buxbaum; Minopoli, Giuseppina; F., Fiore; Decandia, P.; S., Derenzis; Faraonio, Raffaella; S., Sabo; J., Cheetham; M., Sudol; T., Russon
The b-amyloid precursor protein APP is tyrosine phosphorylated in cells expressing a constitutively active form of the Abl protoncogene.
2001 Zambrano, N.; Bruni, P.; Minopoli, G.; Mosca, R.; Molino, D.; Russo, C.; Schettini, G.; Sudol, M.; Russo, Tommaso
Fe65 and the protein network centred around the cytosolic domain of the Alzheimer’s b-amyloid precursor protein.
1998 Russo, Tommaso; Faraonio, Raffaella; Minopoli, G.; DE CANDIA, P.; DE RENZIS, S.; Zambrano, N.
The WW domain of neural protein FE65 interacts with the proline-rich motif of Mena, the mammalian homolog of Drosophila Enabled
1997 Ermekova, K. S.; Zambrano, Nicola; Linn, H.; Minopoli, Giuseppina; Gertler, F.; Russo, Tommaso; Sudol, M.
Fe65, a ligand of the Alzheimer’s b-amyloid precursor protein, blocks cell cycle progression by downregulating thymidylate synthase expression.
2002 Bruni, P.; Minopoli, G.; Brancaccio, T.; Napolitano, M.; Faraonio, Raffaella; Zambrano, N.; Hansen, U.; Russo, Tommaso
The ?-Amyloid Precursor Protein functions as a cytosolic anchoring site that prevents Fe65 nuclear translocation
2001 Minopoli, G; DE CANDIA, P; Bonetti, A; Faraonio, R.; Zambrano, N; Russo, T
Stem cell factor is localized to, and released and cleaved by human mast cells. Atti XXII Symposium del Collegium Internationale Allergologicum
1998 DE PAULIS, Amato; Patella, V.; Minopoli, Giuseppina; Dal Piaz, F.; Pucci, P.; Russo, T.; Marone, G.
Molecular function of the WW domainof Fe65 adaptor protein: towardsunderstanding of signaling byAlzheimer’s amyloid precursor protein
2002 M., Nagai; K., Sheinerman; M., Sudol; Minopoli, Giuseppina; T. R. u. s. s., O.