113 results on '"Pollack, Lois"'
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2. Elucidating the Role of Microprocessor Protein DGCR8 in Bending RNA Structures
3. Viral RNA Folding Studied through Contrast Variation Small Angle- X Ray Scattering
4. DNA Sequence and Histone Core Composition Determine the Unwrapping Pathways in Nucleosomes
5. Discovering Design Principles to Re-Engineer Functional RNA Elements
6. Quantitative Analysis of Salt-Induced RNA Duplex Variations by Wide-Angle X-ray Scattering (WAXS)
7. Probing Mg2+-Mediated RNA-RNA Interactions in the Presence of Metabolites
8. Evidence that Primary Microrna Bends in the Presence of DGCR8 Seen using Both Saxs and FRET Measurements
9. Convolutional Neural Networks Bridge Molecular Models and Solution X-ray Scattering Experiments
10. Sequence-dependent conformational preferences of disordered single-stranded RNA
11. Following Folding Pathways of Common Riboswitch Motifs with Time-Resolved Single-Molecule FRET
12. DNA Sequence and Histone Core Composition Control the Unwrapping of DNA from Nucleosome Core Particles
13. Time-Resolved Contrast Variation SAXS for Studying RNA-Protein Interactions
14. Virus Dynamics Studied by Time-Resolved Small Angle X-Ray Scattering
15. Conformations of an RNA Helix-Junction-Helix Construct Revealed by SAXS Refinement of MD Simulations
16. Local DNA Sequence Controls Asymmetry of DNA Unwrapping from Nucleosome Core Particles
17. Understanding an RNA Helix-junction-Helix Construct by SAXS Refinement of MD Models
18. Time-Resolved SAXS and Ensemble Modelling Reveal Magnesium Orchestration across an RNA Folding Landscape
19. Local DNA Sequence Controls the Asymmetry of DNA Unwrapping from Nucleosome Core Particles
20. Asymmetric DNA Unwrapping Drives Sequential Dimer Release in Nucleosomes
21. Using WAXS to Study RNA Conformations
22. Probing Manganese Ion Distributions Around Nucleic Acids using Small Angle X-Ray Scattering
23. Conformations of Single-Stranded Nucleic Acids in Solution
24. Sequence Dependence in Salt Based Nucleosome Unwrapping Using Saxs
25. Spermine Condenses DNA, but Not RNA Duplexes
26. Condensation of Nucleic Acids by Multivalent Ions: Sequence Dependence and the Curious Case of RNA
27. The Role of Correlation and Solvation in Ion Interactions with B-DNA
28. Tuning RNA Flexibility with Helix Length and Junction Sequence
29. Determining the Locations of Ions and Water around DNA from X-Ray Scattering Measurements
30. RNA Flexibility Depends on Structural Context
31. Exploring RNA Condensation
32. Fixed Path Length Sample Holders Enable Robust Cryosaxs Measurements from Sub-Microliter Sample Volumes
33. Using Contrast Variation with SAXS to Visualize DNA Dissociation from Nucleosome Core Particles
34. Asymmetric Nucleosome Disassembly with Disrupted Histones Revealed by Time Resolved Small Angle X-Ray Scattering with Contrast Variation
35. Fast Binding Kinetics of RNA Aptamers Measured using a Novel Microfluidic Mixer
36. Sorting Out the Structure of Single-Stranded DNA
37. The Role of Ionic Strength and Ion Valence in RNA Collapse and Folding
38. Introducing Cryo-SAXS for Measuring Low Resolution Macromolecular Structure without Radiation Damage
39. A SAXS Study of the CRISPR Associated Gene (Cas) Csn2 in the Presence and Absence of Calcium Ions
40. Global Studies of Single-Stranded Nucleic Acid Conformation
41. Visualizing DNA Disassociation from the Nucleosome Core Particle
42. Duplex RNA and DNA/RNA Hybrid Condensation by Multivalent Ions
43. Breaking the Radiation Damage Limit with Cryo-SAXS
44. RNA and Its Ionic Cloud: Solution Scattering Experiments and Atomically Detailed Simulations
45. Sub-Millisecond RNA Collapse Observed in a Microfluidic Mixer
46. Solution Structures of Flexible RNA Molecules in Mono- and Divalent Salt
47. The Influence of Osmolytes on Electrostatic Interactions Among DNA Duplexes
48. Measuring the Dimensions of a Compact Kinetic Intermediate in the Folding Pathway of the GlmS Ribozyme
49. Improving Electrostatic Descriptions of Ions Around Double-Stranded DNA
50. Flexibilities of Single-Stranded Nucleic Acids Measured by Single Molecule FRET
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