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Your search keyword '"Vega, M."' showing total 21 results

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21 results on '"Vega, M."'

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1. X-Ray Crystallography for Macromolecular Complexes.

2. Protein-Protein Binding Kinetics by Biolayer Interferometry.

3. Determination of available lysine by planar chromatography: a useful tool for protein quality evaluation in fish feed.

4. A simple and fast heuristic for protein structure comparison.

5. Solvation in protein folding analysis: combination of theoretical and experimental approaches.

6. A tryptophan-deficient corn-based diet induces plastic responses in cerebellar cortex cells of rat offspring.

7. Bioseparations with permeable particles.

9. Real-life analysis on safety and efficacy of asciminib for ponatinib pretreated patients with chronic myeloid leukemia.

11. Structural Analysis and Mutant Growth Properties Reveal Distinctive Enzymatic and Cellular Roles for the Three Major L-Alanine Transaminases of Escherichia coli.

12. Crystal Structure, SAXS and Kinetic Mechanism of Hyperthermophilic ADP-Dependent Glucokinase from Thermococcus litoralis Reveal a Conserved Mechanism for Catalysis.

13. Levels of Rabs and WAVE family proteins associated with translocation of GLUT4 to the cell surface in endometria from hyperinsulinemic PCOS women.

14. A comparative study of convicilin storage protein gene sequences in species of the tribe Vicieae.

15. Regulation of the hetero-octameric ATP phosphoribosyl transferase complex fromThermotoga maritimaby a tRNA synthetase-like subunit.

16. Isolation of a family of resistance gene analogue sequences of the nucleotide binding site (NBS) type from Lens species.

17. Trypanosoma cruzi macrophage infectivity potentiator has a rotamase core and a highly exposed a-helix.

19. The neuroprotective activity of GPE tripeptide analogues does not correlate with glutamate receptor binding affinity

20. A Miniprotein Scaffold Used to Assemble the Polyproline II Binding Epitope Recognized by SH3 Domains

21. Structural Analysis and Mutant Growth Properties Reveal Distinctive Enzymatic and Cellular Roles for the Three Major L-Alanine Transaminases of Escherichia coli.

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