Skip Header

13 results for author:"Gnad F." in Literature citations

Page 1 of 1

to top of page·  

Results Customize

› Repeat search in UniProtKB (5,064)

Comprehensive genomic analysis identifies SOX2 as a frequently amplified gene in small-cell lung cancer.

Rudin C.M., Durinck S., Stawiski E.W., Poirier J.T., Modrusan Z., Shames D.S., Bergbower E.A., Guan Y., Shin J., Guillory J. et al.

Nat. Genet. 44:1111-1116(2012) · Mapped (1)

Recurrent R-spondin fusions in colon cancer.

Seshagiri S., Stawiski E.W., Durinck S., Modrusan Z., Storm E.E., Conboy C.B., Chaudhuri S., Guan Y., Janakiraman V., Jaiswal B.S. et al.

Nature 488:660-664(2012) · Mapped (3)

Conditional activation of Pik3ca(H1047R) in a knock-in mouse model promotes mammary tumorigenesis and emergence of mutations.

Yuan W., Stawiski E., Janakiraman V., Chan E., Durinck S., Edgar K.A., Kljavin N.M., Rivers C.S., Gnad F., Roose-Girma M. et al.

Oncogene 32:318-326(2013) · Mapped (2)

C2 domain-containing phosphoprotein CDP138 regulates GLUT4 insertion into the plasma membrane.

Xie X., Gong Z., Mansuy-Aubert V., Zhou Q.L., Tatulian S.A., Sehrt D., Gnad F., Brill L.M., Motamedchaboki K., Chen Y. et al.

Cell Metab. 14:378-389(2011) · UniProtKB (4) · Mapped (11)

Site-specific identification of SUMO-2 targets in cells reveals an inverted SUMOylation motif and a hydrophobic cluster SUMOylation motif.

Matic I., Schimmel J., Hendriks I.A., van Santen M.A., van de Rijke F., van Dam H., Gnad F., Mann M., Vertegaal A.C.

Mol. Cell 39:641-652(2010) · Mapped (1)

Quantitative phosphoproteomics reveals widespread full phosphorylation site occupancy during mitosis.

Olsen J.V., Vermeulen M., Santamaria A., Kumar C., Miller M.L., Jensen L.J., Gnad F., Cox J., Jensen T.S., Nigg E.A. et al.

Sci. Signal. 3:RA3-RA3(2010) · UniProtKB (2,758) · Mapped (3)

Lysine acetylation targets protein complexes and co-regulates major cellular functions.

Choudhary C., Kumar C., Gnad F., Nielsen M.L., Rehman M., Walther T.C., Olsen J.V., Mann M.

Science 325:834-840(2009) · UniProtKB (1,179) · Mapped (1)

Systems-wide analysis of a phosphatase knock-down by quantitative proteomics and phosphoproteomics.

Hilger M., Bonaldi T., Gnad F., Mann M.

Mol. Cell Proteomics 8:1908-1920(2009) · Mapped (52)

Large-scale proteomics analysis of the human kinome.

Oppermann F.S., Gnad F., Olsen J.V., Hornberger R., Greff Z., Keri G., Mann M., Daub H.

Mol. Cell. Proteomics 8:1751-1764(2009) · UniProtKB (542)

Solid tumor proteome and phosphoproteome analysis by high resolution mass spectrometry.

Zanivan S., Gnad F., Wickstroem S.A., Geiger T., Macek B., Cox J., Faessler R., Mann M.

J. Proteome Res. 7:5314-5326(2008) · UniProtKB (1,074)

Kinase-selective enrichment enables quantitative phosphoproteomics of the kinome across the cell cycle.

Daub H., Olsen J.V., Bairlein M., Gnad F., Oppermann F.S., Korner R., Greff Z., Keri G., Stemmann O., Mann M.

Mol. Cell 31:438-448(2008) · UniProtKB (966)

The serine/threonine/tyrosine phosphoproteome of the model bacterium Bacillus subtilis.

Macek B., Mijakovic I., Olsen J.V., Gnad F., Kumar C., Jensen P.R., Mann M.

Mol. Cell. Proteomics 6:697-707(2007) · UniProtKB (59)

Global, in vivo, and site-specific phosphorylation dynamics in signaling networks.

Olsen J.V., Blagoev B., Gnad F., Macek B., Kumar C., Mortensen P., Mann M.

Cell 127:635-648(2006) · UniProtKB (1,293)

to top of page·

Page 1 of 1