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18 results on '"Satwik Kamtekar"'

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1. Discovery of Clinical Candidate 1-{[(2S,3S,4S)-3-Ethyl-4-fluoro-5-oxopyrrolidin-2-yl]methoxy}-7-methoxyisoquinoline-6-carboxamide (PF-06650833), a Potent, Selective Inhibitor of Interleukin-1 Receptor Associated Kinase 4 (IRAK4), by Fragment-Based Drug Design

2. Phi29 DNA polymerase: structure and sequencing

3. Crystal structure of an intermediate of rotating dimers within the synaptic tetramer of the G-segment invertase

4. Structural basis of substrate discrimination and integrin binding by autotaxin

5. Asymmetric behavior of archaeal prolyl-tRNA synthetase

6. Structure of a Synaptic γδ Resolvase Tetramer Covalently Linked to Two Cleaved DNAs

7. A specific subdomain in φ29 DNA polymerase confers both processivity and strand-displacement capacity

8. Insights into Strand Displacement and Processivity from the Crystal Structure of the Protein-Primed DNA Polymerase of Bacteriophage φ29

9. Cys-tRNACys formation and cysteine biosynthesis in methanogenic archaea: two faces of the same problem?

10. Nucleotide-Dependent Conformational Changes in a Protease-Associated ATPase HslU

11. Crystal Structures of the HslVU Peptidase–ATPase Complex Reveal an ATP-Dependent Proteolysis Mechanism

12. Discovery of novel spirocyclic inhibitors of fatty acid amide hydrolase (FAAH). Part 2. Discovery of 7-azaspiro[3.5]nonane urea PF-04862853, an orally efficacious inhibitor of fatty acid amide hydrolase (FAAH) for pain

13. Kinetic and structural characterization of caspase-3 and caspase-8 inhibition by a novel class of irreversible inhibitors

14. Structures of phi29 DNA polymerase complexed with substrate: the mechanism of translocation in B-family polymerases

15. Implications of structures of synaptic tetramers of gamma delta resolvase for the mechanism of recombination

16. The phi29 DNA polymerase:protein-primer structure suggests a model for the initiation to elongation transition

17. The structural basis of cysteine aminoacylation of tRNAPro by prolyl-tRNA synthetases

18. Protein design by binary patterning of polar and nonpolar amino acids

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