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12 results for author:"Beattie B." in Literature citations

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The SH2B1 adaptor protein associates with a proximal region of the erythropoietin receptor.

Javadi M., Hofstatter E., Stickle N., Beattie B.K., Jaster R., Carter-Su C., Barber D.L.

J. Biol. Chem. 287:26223-26234(2012) · Mapped (4)

Rational protein engineering in action: the first crystal structure of a phenylalanine tRNA synthetase from Staphylococcus haemolyticus.

Evdokimov A.G., Mekel M., Hutchings K., Narasimhan L., Holler T., McGrath T., Beattie B., Fauman E., Yan C., Heaslet H. et al.

J. Struct. Biol. 162:152-169(2008) · Mapped (2)

Improved tumor imaging and therapy via i.v. IgG-mediated time-sequential modulation of neonatal Fc receptor.

Jaggi J.S., Carrasquillo J.A., Seshan S.V., Zanzonico P., Henke E., Nagel A., Schwartz J., Beattie B., Kappel B.J., Chattopadhyay D. et al.

J. Clin. Invest. 117:2422-2430(2007) · Mapped (2)

Global landscape of protein complexes in the yeast Saccharomyces cerevisiae.

Krogan N.J., Cagney G., Yu H., Zhong G., Guo X., Ignatchenko A., Li J., Pu S., Datta N., Tikuisis A.P. et al.

Nature 440:637-643(2006) · UniProtKB (1) · Mapped (2,675)

Erythropoietin receptor Y479 couples to ERK1/2 activation via recruitment of phospholipase Cgamma.

Halupa A., Chohan M., Stickle N.H., Beattie B.K., Miller B.A., Barber D.L.

Exp. Cell Res. 309:1-11(2005) · Mapped (20)

Interaction network containing conserved and essential protein complexes in Escherichia coli.

Butland G., Peregrin-Alvarez J.M., Li J., Yang W., Yang X., Canadien V., Starostine A., Richards D., Beattie B., Krogan N. et al.

Nature 433:531-537(2005) · Mapped (1,204)

RPAP1, a novel human RNA polymerase II-associated protein affinity purified with recombinant wild-type and mutated polymerase subunits.

Jeronimo C., Langelier M.-F., Zeghouf M., Cojocaru M., Bergeron D., Baali D., Forget D., Mnaimneh S., Davierwala A.P., Pootoolal J. et al.

Mol. Cell. Biol. 24:7043-7058(2004) · UniProtKB (2) · Mapped (2)

High-definition macromolecular composition of yeast RNA-processing complexes.

Krogan N.J., Peng W.-T., Cagney G., Robinson M.D., Haw R., Zhong G., Guo X., Zhang X., Canadien V., Richards D.P. et al.

Mol. Cell 13:225-239(2004) · UniProtKB (5) · Mapped (253)

A panoramic view of yeast noncoding RNA processing.

Peng W.-T., Robinson M.D., Mnaimneh S., Krogan N.J., Cagney G., Morris Q.D., Davierwala A.P., Grigull J., Yang X., Zhang W. et al.

Cell 113:919-933(2003) · UniProtKB (11) · Mapped (3)

Methylation of histone H3 by Set2 in Saccharomyces cerevisiae is linked to transcriptional elongation by RNA polymerase II.

Krogan N.J., Kim M., Tong A., Golshani A., Cagney G., Canadien V., Richards D.P., Beattie B.K., Emili A., Boone C. et al.

Mol. Cell. Biol. 23:4207-4218(2003) · UniProtKB (2) · Mapped (41)

A common epitope is shared by activated signal transducer and activator of transcription-5 (STAT5) and the phosphorylated erythropoietin receptor: implications for the docking model of STAT activation.

Barber D.L., Beattie B.K., Mason J.M., Nguyen M.H.-H., Yoakim M., Neel B.G., D'Andrea A.D., Frank D.A.

Blood 97:2230-2237(2001) · UniProtKB (1)

The SH2 inositol 5-phosphatase Ship1 is recruited in an SH2-dependent manner to the erythropoietin receptor.

Mason J.M., Beattie B.K., Liu Q., Dumont D.J., Barber D.L.

J. Biol. Chem. 275:4398-4406(2000) · UniProtKB (2)

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