17 results on '"Azamat, İF"'
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2. Aligned peptoid-based macrodiscs for structural studies of membrane proteins by oriented-sample NMR
3. The Ras G Domain Lacks the Intrinsic Propensity to Form Dimers
4. Cofactor-dependent structural transition of SOD1 modulates its ability to undergo liquid-liquid phase separation
5. Elucidating residue level contributions to phase separation using a model polypeptide
6. Hydrophobic residues in disordered and helical regions mediate the oligomerization and phase separation of TDP-43 C-terminal domain
7. Multiscale simulations of TDP-43 full-length uncover molecular determinants of its phase separation beyond N/C-terminal oligomerization
8. Aligned peptoid-based macrodiscs for structural studies of membrane proteins by oriented-sample NMR
9. Cofactor-dependent structural transition of SOD1 modulates its ability to undergo liquid-liquid phase separation
10. Multiscale simulations of TDP-43 full-length uncover molecular determinants of its phase separation beyond N/C-terminal oligomerization
11. Elucidating residue level contributions to phase separation using a model polypeptide
12. Hydrophobic residues in disordered and helical regions mediate the oligomerization and phase separation of TDP-43 C-terminal domain
13. Multiscale simulations reveal molecular dynamics of TDP-43 assemblies
14. Magnetically aligned peptoid-based macrodiscs for structure determination of membrane proteins by solid-state NMR
15. Uncovering the molecular language of protein liquid-liquid phase separation
16. Magnetically aligned peptoid-based macrodiscs for structure determination of membrane proteins by solid-state NMR
17. Multiscale simulations reveal molecular dynamics of TDP-43 assemblies
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