650 results on '"Warshel, Arieh"'
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2. Exploring the free-energy landscape of GPCR activation
3. Exploring the activation pathway and G i -coupling specificity of the μ-opioid receptor
4. A new class of α-ketoamide derivatives with potent anticancer and anti-SARS-CoV-2 activities
5. Mechanistic study of the transmission pattern of the SARS‐CoV‐2 omicron variant.
6. Refining the treatment of membrane proteins by coarse‐grained models
7. The catalytic dwell in ATPases is not crucial for movement against applied torque
8. Revisiting the protomotive vectorial motion of F₀-ATPase
9. Exploring the challenges of computational enzyme design by rebuilding the active site of a dehalogenase
10. Exploring the Light-Emitting Agents in Renilla Luciferases by an Effective QM/MM Approach.
11. Exploring the activation mechanism of metabotropic glutamate receptor 2.
12. Assessing the Catalytic Role of Native Glucagon Amyloid Fibrils.
13. Energetic and structural insights behind calcium induced conformational transition in calmodulin.
14. On the control of the proton current in the voltage-gated proton channel Hv1
15. EF-Tu and EF-G are activated by allosteric effects
16. Computer Simulations of Protein Functions: Searching for the Molecular Origin of the Replication Fidelity of DNA Polymerases
17. Reexamining the origin of the directionality of myosin V
18. Simulating the dynamics of the mechanochemical cycle of myosin-V
19. Converting Conformational Changes to Electrostatic Energy in Molecular Motors: The Energetics of ATP Synthase
20. Predicting Mutational Effects on Ca2+-Activated Chloride Conduction of TMEM16A Based on a Simulation Study.
21. Fine-tuning activation specificity of G-protein-coupled receptors via automated path searching.
22. A Chemical Strategy for the Degradation of the Main Protease of SARS-CoV‑2 in Cells.
23. Harnessing generative AI to decode enzyme catalysis and evolution for enhanced engineering.
24. Computer Simulations of Enzyme Catalysis: Finding out what has been Optimized by Evolution
25. Energy Considerations Show that Low-Barrier Hydrogen Bonds do not Offer a Catalytic Advantage over Ordinary Hydrogen Bonds
26. Analyzing the electrogenicity of cytochrome c oxidase
27. Enhancing luciferase activity and stability through generative modeling of natural enzyme sequences.
28. Elucidation of the α‑Ketoamide Inhibition Mechanism: Revealing the Critical Role of the Electrostatic Reorganization Effect of Asp17 in the Active Site of the 20S Proteasome.
29. The FOF1 ATP synthase: from atomistic three-dimensional structure to the rotary-chemical function
30. Brønsted slopes based on single-molecule imaging data help to unveil the chemically coupled rotation in F₁-ATPase
31. Simulating the function of sodium/proton antiporters
32. The entropic contributions in vitamin B 12 enzymes still reflect the electrostatic paradigm
33. Dissecting the role of the γ -subunit in the rotary–chemical coupling and torque generation of F₁-ATPase
34. Computer aided enzyme design and catalytic concepts
35. Modeling gating charge and voltage changes in response to charge separation in membrane proteins
36. Coarse-grained simulations of the gating current in the voltage-activated Kv1.2 channel
37. Quantitative exploration of the molecular origin of the activation of GTPase
38. Electrostatic origin of the unidirectionality of walking myosin V motors
39. Simulating the pulling of stalled elongated peptide from the ribosome by the translocon
40. Exploring the nature of the translocon-assisted protein insertion
41. Realistic simulations of the coupling between the protomotive force and the mechanical rotation of the F₀-ATPase
42. Realistic simulation of the activation of voltage-gated ion channels
43. Electrostatic origin of the mechanochemical rotary mechanism and the catalytic dwell of F1-ATPase
44. Catalysis by dihydrofolate reductase and other enzymes arises from electrostatic preorganization, not conformational motions
45. Converting structural information into an allosteric-energy-based picture for elongation factor Tu activation by the ribosome
46. Understanding the determinants of selectivity in drug metabolism through modeling of dextromethorphan oxidation by cytochrome P450
47. Large shifts in pKₐ values of lysine residues buried inside a protein
48. Mechanism of tungsten-dependent acetylene hydratase from quantum chemical calculations
49. On the energetics of translocon-assisted insertion of charged transmembrane helices into membranes
50. Exploring challenges in rational enzyme design by simulating the catalysis in artificial kemp eliminase
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