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Shreya Ghosh
Shreya Ghosh
Postdoctoral Fellow, NIDDK, National Institutes of Health
Verified email at nih.gov
Title
Cited by
Cited by
Year
The Cu2+-nitrilotriacetic acid complex improves loading of α-helical double histidine site for precise distance measurements by pulsed ESR
S Ghosh, MJ Lawless, GS Rule, S Saxena
Journal of Magnetic Resonance 286, 163-171, 2018
722018
EPR spectroscopy detects various active state conformations of the transcriptional regulator CueR
H Sameach, S Ghosh, L Gevorkyan-Airapetov, S Saxena, S Ruthstein
Angewandte Chemie International Edition, 2019
652019
On the use of the Cu 2+–iminodiacetic acid complex for double histidine based distance measurements by pulsed ESR
MJ Lawless, S Ghosh, TF Cunningham, A Shimshi, S Saxena
Physical Chemistry Chemical Physics 19 (31), 20959-20967, 2017
542017
On the Use of Q-Band Double Electron–Electron Resonance To Resolve the Relative Orientations of Two Double Histidine-Bound Cu2+ Ions in a Protein
A Gamble Jarvi, K Ranguelova, S Ghosh, RT Weber, S Saxena
The Journal of Physical Chemistry B 122 (47), 10669-10677, 2018
432018
Going the dHis-tance: Site-Directed Cu2+ Labeling of Proteins and Nucleic Acids
A Gamble Jarvi, X Bogetti, K Singewald, S Ghosh, S Saxena
Accounts of Chemical Research 54 (6), 1481-1491, 2021
382021
Cu2+-based distance measurements by pulsed EPR provide distance constraints for DNA backbone conformations in solution
S Ghosh, MJ Lawless, HJ Brubaker, K Singewald, MR Kurpiewski, ...
Nucleic Acids Research 48 (9), e49-e49, 2020
382020
Molecular Dynamics Simulations Based on Newly Developed Force Field Parameters for Cu2+ Spin Labels Provide Insights into Double-Histidine-Based Double …
X Bogetti, S Ghosh, A Gamble Jarvi, J Wang, S Saxena
The Journal of Physical Chemistry B 124 (14), 2788-2797, 2020
352020
Rotamer Modelling of Cu (II) Spin Labels Based on the Double-Histidine Motif
S Ghosh, S Saxena, G Jeschke
Applied Magnetic Resonance 49 (11), 1281-1298, 2018
292018
Cu (II)-based DNA labeling identifies the structural link between transcriptional activation and termination in a metalloregulator
J Casto, A Mandato, L Hofmann, I Yakobov, S Ghosh, S Ruthstein, ...
Chemical Science 13 (6), 1693-1697, 2022
172022
Orientation and dynamics of Cu 2+ based DNA labels from force field parameterized MD elucidates the relationship between EPR distance constraints and DNA backbone distances
S Ghosh, J Casto, X Bogetti, C Arora, J Wang, S Saxena
Physical Chemistry Chemical Physics 22 (46), 26707, 2020
112020
An undergraduate experiment to explore Cu (II) coordination environment in multihistidine compounds through electron spin resonance spectroscopy
EP Wagner, KC Gronborg, S Ghosh, S Saxena
Journal of Chemical Education 96 (8), 1752-1759, 2019
92019
Cu (II) EPR Reveals Two Distinct Binding Sites and Oligomerization of Innate Immune Protein Calgranulin C
S Ghosh, V Garcia, K Singewald, SM Damo, S Saxena
Applied Magnetic Resonance 49 (11), 1299-1311, 2018
52018
Quantitative NMR analysis of the mechanism and kinetics of chaperone Hsp104 action on amyloid-β42 aggregation and fibril formation
S Ghosh, V Tugarinov, GM Clore
Proceedings of the National Academy of Sciences of the United States of …, 2023
32023
Nanoscale spin detection of copper ions using double electron-electron resonance at room temperature
K Zhang, S Ghosh, S Saxena, MVG Dutt
Physical Review B 104 (22), 224412, 2021
32021
Inside cover: EPR spectroscopy detects various active state conformations of the transcriptional regulator CueR (Angew. Chem. Int. Ed. 10/2019)
H Sameach, S Ghosh, L Gevorkyan‐Airapetov, S Saxena, S Ruthstein
Angewandte Chemie International Edition 58 (10), 2908-2908, 2019
12019
Site-Directed Cu2+ Labeling Methodologies for Obtaining Distance Constraints in Proteins and DNA
S Ghosh
University of Pittsburgh, 2021
2021
Nanoscale spin detection of CuCl molecules using double electron-electron resonance at room temperature
K Zhang, S Ghosh, S Saxena, MV Gurudev Dutt
arXiv e-prints, arXiv: 2101.02650, 2021
2021
Innentitelbild: EPR Spectroscopy Detects Various Active State Conformations of the Transcriptional Regulator CueR (Angew. Chem. 10/2019)
H Sameach, S Ghosh, L Gevorkyan‐Airapetov, S Saxena, S Ruthstein
Angewandte Chemie 131 (10), 2934-2934, 2019
2019
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