24 results on '"Russell, Robert B"'
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2. Genes encoding members of the JAK-STAT pathway or epigenetic regulators are recurrently mutated in T-cell prolymphocytic leukaemia
3. Recurrent mutation ofJAK3in T-cell prolymphocytic leukemia
4. ChemInform Abstract: Subunit Architecture of Intact Protein Complexes from Mass Spectrometry and Homology Modeling
5. Interactions between the Fyn SH3-domain and adaptor protein Cbp/PAG derived ligands, effects on kinase activity and affinity
6. A careful disorderliness in the proteome: Sites for interaction and targets for future therapies
7. The hard cell: From proteomics to a whole cell model
8. Systems‐wide analysis of protein complexes in Saccharomyces cerevisiae
9. Structural similarity to bridge sequence space: Finding new families on the bridges
10. Linear motifs: Evolutionary interaction switches
11. Illuminating drug discovery with biological pathways
12. Structure‐based systems biology: a zoom lens for the cell
13. Systematic searches for molecular synapomorphies in model metazoan genomes give some support for Ecdysozoa after accounting for the idiosyncrasies of Caenorhabditis elegans
14. Predictions without templates: New folds, secondary structure, and contacts in CASP5
15. Potential artefacts in protein-interaction networks
16. Fold recognition without folds
17. Structural similarity to link sequence space: New potential superfamilies and implications for structural genomics
18. Evolutionary relationship between the bacterial HPr kinase and the ubiquitous PEP‐carboxykinase: expanding the P‐loop nucleotidyl transferase superfamily
19. Sialidase-like Asp-boxes: Sequence-similar structures within different protein folds
20. Fold recognition from sequence comparisons
21. Fold recognition using sequence and secondary structure information
22. Fold recognition using sequence and secondary structure information
23. Multiple protein sequence alignment from tertiary structure comparison: Assignment of global and residue confidence levels
24. Conservation analysis and structure prediction of the SH2 family of phosphotyrosine binding domains
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