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Srivastav Ranganathan
Srivastav Ranganathan
Postdoctoral Researcher, Department of Chemistry and Chemical Biology, Harvard University
Verified email at fas.harvard.edu
Title
Cited by
Cited by
Year
Dynamic metastable long-living droplets formed by sticker-spacer proteins
S Ranganathan, EI Shakhnovich
Elife 9, e56159, 2020
1122020
Elucidating the Role of Disulfide Bond on Amyloid Formation and Fibril Reversibility of Somatostatin-14: RELEVANCE TO ITS STORAGE AND SECRETION*♦
A Anoop, S Ranganathan, BD Dhaked, NN Jha, S Pratihar, S Ghosh, ...
Journal of Biological Chemistry 289 (24), 16884-16903, 2014
812014
Investigating the intrinsic aggregation potential of evolutionarily conserved segments in p53
S Ghosh, D Ghosh, S Ranganathan, A Anoop, SK P, NN Jha, ...
Biochemistry 53 (38), 5995-6010, 2014
542014
Characterization of amyloid formation by glucagon-like peptides: role of basic residues in heparin-mediated aggregation
NN Jha, A Anoop, S Ranganathan, GM Mohite, R Padinhateeri, SK Maji
Biochemistry 52 (49), 8800-8810, 2013
422013
Defining a Physical Basis for Diversity in Protein Self-Assemblies Using a Minimal Model
S Ranganathan, SK Maji, R Padinhateeri
Journal of the American Chemical Society, 2016
272016
The physics of liquid-to-solid transitions in multi-domain protein condensates
S Ranganathan, E Shakhnovich
Biophysical Journal 121 (14), 2751-2766, 2022
222022
Effect of RNA on morphology and dynamics of membraneless organelles
S Ranganathan, E Shakhnovich
The Journal of Physical Chemistry B 125 (19), 5035-5044, 2021
152021
Molecular interpretation of ACTH-β-endorphin coaggregation: relevance to secretory granule biogenesis
S Ranganathan, PK Singh, U Singh, PS Singru, R Padinhateeri, SK Maji
PLoS One 7 (3), e31924, 2012
152012
Complexation of NAC-derived peptide ligands with the C-terminus of α-synuclein accelerates its aggregation
NN Jha, S Ranganathan, R Kumar, S Mehra, R Panigrahi, A Navalkar, ...
Biochemistry 57 (5), 791-804, 2018
122018
A minimal conformational switching-dependent model for amyloid self-assembly
S Ranganathan, D Ghosh, M Samir K., P Ranjith
Scientific Reports, 21103, 2016
122016
Cell alignment on graphene–amyloid composites
S Das, MK Kumawat, S Ranganathan, R Kumar, J Adamcik, P Kadu, ...
Advanced Materials Interfaces 5 (18), 1800621, 2018
92018
Role of non-specific interactions in the phase-separation and maturation of macromolecules
R Krishnan, S Ranganathan, SK Maji, R Padinhateeri
PLOS Computational Biology 18 (5), e1010067, 2022
62022
Phosphorylation sites are evolutionary checkpoints against liquid–solid transition in protein condensates
S Ranganathan, P Dasmeh, S Furniss, E Shakhnovich
Proceedings of the National Academy of Sciences 120 (20), e2215828120, 2023
42023
Different states and the associated fates of biomolecular condensates
S Ranganathan, J Liu, E Shakhnovich
Essays in biochemistry 66 (7), 849-862, 2022
32022
Understanding the Mechanism of Somatostatin-14 Amyloid Formation In Vitro
A Anoop, S Ranganathan, BD Dhaked, RS Jacob, A Kumar, ...
Biophysical Journal 104 (2), 50a, 2013
32013
Myo-inositol suppresses γD-crystallin aggregation by interacting with a non-native state
C Kraay, E Serebryany, S Ranganathan, E Shakhnovich
Biophysical Journal 123 (3), 58a, 2024
2024
A comprehensive map of transient protein-protein interactions and their structural features in the E. coli 1-carbon metabolism pathway
S Bhattacharyya, S Ranganathan, S Chowdhury, BV Adkar, M Khrapko, ...
bioRxiv, 2024.02. 17.580827, 2024
2024
Enzymatic metabolons dramatically enhance metabolic fluxes of low-efficiency biochemical reactions
S Ranganathan, J Liu, E Shakhnovich
Biophysical Journal 122 (23), 4555-4566, 2023
2023
Investigating the mechanism of suppression of human γD-crystallin aggregation by myo-inositol
C Kraay, E Serebryany, S Ranganathan, E Shakhnovich
Biophysical Journal 122 (3), 337a, 2023
2023
Molecular determinants of protein assemblies in health and disease, Volume II
V Kohler, A Arunagiri, S Ventura, S Kroschwald, S Ranganathan
Frontiers in Molecular Biosciences 10, 2023
2023
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Articles 1–20