Molecular mechanisms of cell cycle control in mouse cell lines (2004)
- Authors:
- USP affiliated authors: ARMELIN, HUGO AGUIRRE - IQ ; ROCHA, KATIA MARIA DA - IB
- Unidades: IQ; IB
- Subjects: BIOQUÍMICA; CÉLULAS CULTIVADAS DE TUMOR; CICLO CELULAR
- Language: Inglês
- Imprenta:
- Source:
- Título do periódico: Abstracts
- Conference titles: Congress of the Brazilian Society for Cell Biology
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ABNT
COSTA, Érico Tozoni et al. Molecular mechanisms of cell cycle control in mouse cell lines. 2004, Anais.. São Paulo: SBBC, 2004. . Acesso em: 20 abr. 2024. -
APA
Costa, É. T., Forti, F. L., Asprino, P. F., Matos, T. G. de F., Rocha, K. M. da, Moraes, M. S. de, & Armelin, H. A. (2004). Molecular mechanisms of cell cycle control in mouse cell lines. In Abstracts. São Paulo: SBBC. -
NLM
Costa ÉT, Forti FL, Asprino PF, Matos TG de F, Rocha KM da, Moraes MS de, Armelin HA. Molecular mechanisms of cell cycle control in mouse cell lines. Abstracts. 2004 ;[citado 2024 abr. 20 ] -
Vancouver
Costa ÉT, Forti FL, Asprino PF, Matos TG de F, Rocha KM da, Moraes MS de, Armelin HA. Molecular mechanisms of cell cycle control in mouse cell lines. Abstracts. 2004 ;[citado 2024 abr. 20 ] - FGF2 triggers Rho-A-mediated-senescence in ras-transformed mouse tumor cell lines
- Regulation of G0/G1"arrow"S cell cycle transition in mouse adrenocortical cells: role of the cyclin D-CDK4/6 pathway
- Molecular mechanisms of cell cycle control in the mouse Y1 adrenal cell line
- c-Ki-ras oncogene amplification and FGF2 signaling pathways in the mouse Y1 adrenocortical cell line
- c-Myc protein is stabilized by fibroblast growth factor 2 and destabilized by ACTH to control cell cycle in mouse Y1 adrenocortical cells
- Isolamento de clones revertentes normais a partir de celulas balb/3t3 transformadas com o oncogene humano ej-ras
- Selection of normal revertants from tumorigenic balb 3t3 mouse cell lines carrying the human ej-ras oncogene
- Anomalias na fase 'G IND.0' / 'G IND.1' do ciclo celular de celulas 3t3 transformadas neoplasticamente pelo encogene humano ej-ras
- Dual effect of phorbol ester in go'SETA'sl'SETA's transition of the cell cycle
- Cell cycle control by peptide growth factors and hormones
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