18 results for author:"Baladron V." in Literature citations
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| Mouse resistin modulates adipogenesis and glucose uptake in 3T3-L1 preadipocytes through the ROR1 receptor. Sanchez-Solana B., Laborda J., Baladron V. Mol. Endocrinol. 26:110-127(2012) · Mapped (3) |
| The EGF-like proteins DLK1 and DLK2 function as inhibitory non-canonical ligands of NOTCH1 receptor that modulate each other's activities. Sanchez-Solana B., Nueda M.L., Ruvira M.D., Ruiz-Hidalgo M.J., Monsalve E.M., Rivero S., Garcia-Ramirez J.J., Diaz-Guerra M.J., Baladron V., Laborda J. Biochim. Biophys. Acta 1813:1153-1164(2011) · Mapped (18) |
| Notch1 upregulates LPS-induced macrophage activation by increasing NF-kappaB activity. Monsalve E., Ruiz-Garcia A., Baladron V., Ruiz-Hidalgo M.J., Sanchez-Solana B., Rivero S., Garcia-Ramirez J.J., Rubio A., Laborda J., Diaz-Guerra M.J. Eur. J. Immunol. 39:2556-2570(2009) · Mapped (3) |
| dlk1 specifically interacts with insulin-like growth factor binding protein 1 to modulate adipogenesis of 3T3-L1 cells. Nueda M.L., Garcia-Ramirez J.J., Laborda J., Baladron V. J. Mol. Biol. 379:428-442(2008) · Mapped (23) |
| The EGF-like protein dlk1 inhibits notch signaling and potentiates adipogenesis of mesenchymal cells. Nueda M.L., Baladron V., Sanchez-Solana B., Ballesteros M.A., Laborda J. J. Mol. Biol. 367:1281-1293(2007) · Mapped (26) |
| The novel gene EGFL9/Dlk2, highly homologous to Dlk1, functions as a modulator of adipogenesis. Nueda M.L., Baladron V., Garcia-Ramirez J.J., Sanchez-Solana B., Ruvira M.D., Rivero S., Ballesteros M.A., Monsalve E.M., Diaz-Guerra M.J., Ruiz-Hidalgo M.J. et al. J. Mol. Biol. 367:1270-1280(2007) · UniProtKB (2) · Mapped (13) |
| Identification of a lipase-linked cell membrane receptor for pigment epithelium-derived factor. Notari L., Baladron V., Aroca-Aguilar J.D., Balko N., Heredia R., Meyer C., Notario P.M., Saravanamuthu S., Nueda M.-L., Sanchez-Sanchez F. et al. J. Biol. Chem. 281:38022-38037(2006) · UniProtKB (1) · Mapped (1) |
| Notch-1 up-regulation and signaling following macrophage activation modulates gene expression patterns known to affect antigen-presenting capacity and cytotoxic activity. Monsalve E., Perez M.A., Rubio A., Ruiz-Hidalgo M.J., Baladron V., Garcia-Ramirez J.J., Gomez J.C., Laborda J., Diaz-Guerra M.J. J. Immunol. 176:5362-5373(2006) · Mapped (5) |
| dlk acts as a negative regulator of Notch1 activation through interactions with specific EGF-like repeats. Baladron V., Ruiz-Hidalgo M.J., Nueda M.L., Diaz-Guerra M.J., Garcia-Ramirez J.J., Bonvini E., Gubina E., Laborda J. Exp. Cell Res. 303:343-359(2005) · Mapped (11) |
| Eng1p, an endo-1,3-beta-glucanase localized at the daughter side of the septum, is involved in cell separation in Saccharomyces cerevisiae. Baladron V., Ufano S., Duenas E., Martin-Cuadrado A.B., del Rey F., Vazquez de Aldana C.R. |
| dlk modulates mitogen-activated protein kinase signaling to allow or prevent differentiation. Ruiz-Hidalgo M.J., Gubina E., Tull L., Baladron V., Laborda J. Exp. Cell Res. 274:178-188(2002) · Mapped (9) |
| The EGF-like homeotic protein dlk affects cell growth and interacts with growth-modulating molecules in the yeast two-hybrid system. Baladron V., Ruiz-Hidalgo M.J., Bonvini E., Gubina E., Notario V., Laborda J. Biochem. Biophys. Res. Commun. 291:193-204(2002) · Mapped (12) |
| Specific regions of the extracellular domain of dlk, an EGF-like homeotic protein involved in differentiation, participate in intramolecular interactions. Baladron V., Ruiz-Hidalgo M.J., Gubina E., Bonvini E., Laborda J. Front. Biosci. 6:A25-32(2001) · Mapped (9) |
| Assignment of dlk (Dlk1) to mouse chromosome band 12E-F1 by in situ hybridization. Gubina E., Ruiz-Hidalgo M.J., Baladron V., Laborda J. Cytogenet. Cell Genet. 88:322-323(2000) · Mapped (12) |
| The nucleotide sequence of Saccharomyces cerevisiae chromosome XIV and its evolutionary implications. Philippsen P., Kleine K., Poehlmann R., Duesterhoeft A., Hamberg K., Hegemann J.H., Obermaier B., Urrestarazu L.A., Aert R., Albermann K. et al. Nature 387:93-98(1997) · UniProtKB (439) |
| The complete sequence of an 18,002 bp segment of Saccharomyces cerevisiae chromosome XI contains the HBS1, MRP-L20 and PRP16 genes, and six new open reading frames. Garcia-Cantalejo J.M., Baladron V., Esteban P.F., Santos M.A., Bou G., Remacha M.A., Revuelta J.L., Ballesta J.P.G., Jimenez A., del Rey F. Yeast 10:231-245(1994) · UniProtKB (10) |
| Complete DNA sequence of yeast chromosome XI. Dujon B., Alexandraki D., Andre B., Ansorge W., Baladron V., Ballesta J.P.G., Banrevi A., Bolle P.-A., Bolotin-Fukuhara M., Bossier P. et al. Nature 369:371-378(1994) · UniProtKB (348) |
| The complete sequence of a 15,820 bp segment of Saccharomyces cerevisiae chromosome XI contains the UBI2 and MPL1 genes and three new open reading frames. Bou G., Esteban P.F., Baladron V., Gonzalez G.A., Cantalejo J.G., Remacha M.A., Jimenez A., del Rey F., Ballesta J.P.G., Revuelta J.L. |

