2026 4
22Murakami, K., Nguyen, T. H. V., Tsuda, L., Chawla, E., Wang, Y., Chen, Y., Nagao, C., Mizuguchi, K., Manna, S., Maji, S. K., Tochio, H., & Bitan, G. (2026).
Development of an RNA aptamer as a therapeutic agent for synucleinopathies.
Nature Communications. In press.
21Riya Bera*, Shouvik Manna*, Ranjit Shaw*, Arpita Bhattacharya*, & Samir K. Maji (2026).
Dopamine and Rotenone Modulate α-Synuclein Phase Separation and Liquid to Solid Transition.
Small, e14922. (*equal contribution)
20Dutta, S., & Padinhateeri, R. (2026).
Polymer simulations of chromatin: connecting 3D organization and dynamics to function.
Current Opinion in Genetics & Development, 96, 102429.
19Paul, A., & Maji, S. K. (2026).
Phase separation of tumor suppressor p53 and its family proteins.
Comprehensive Biophysics, 2nd Ed., Elsevier.
2025 10
18Mukherjee, S., Sengupta, D., Sulkshane, P., Modak, A., Singh, S., Manna, S., Paul, A., Shaw, R., Devi, J., Masurkar, S., Bera, R., & Maji, S.K. (2025).
Phase separation as a concentrating mechanism of protein/peptide hormones for secretory granule storage.
bioRxiv.
17Polisetty, S.D., Dutta, S., Vadnala, R.N., Notani, D., Padinhateeri, R., & Sanyal, K. (2025).
Organization principles of dynamic three-dimensional genome architecture associated with centromere clustering states.
Proceedings of the National Academy of Sciences, 122(50), e2520310122.
16Kadam, S., Sahoo, S., Kumar, P.B., & Padinhateeri, R. (2025).
Dynamical properties of chromatin provide insights into key folding principles.
Biophysical Journal, 124(19), 3189–3205.
15Aman, A., Hoskote, A., Jadhav, K.S., & Aggarwal, B. (2025).
Comparative analysis of brain volumetric measurements between contrast-enhanced and non-contrast MRI images.
Neuroscience Letters, 846, 138118.
14Patel, K., & Maji, S.K. (2025).
Are amyloid-based materials conducive to tissue engineering?
Trends in Biotechnology.
13Gahlot, N., Shaw, R., Wahi, R., Patel, K., & Maji, S.K. (2025).
Optimizing the cell number and size for tumor spheroid modeling using amyloid hydrogel.
ChemBioChem, 26(23), e202400595.
12Shaw, R., Patel, K., Chimthanawala, N.M.A., Sathaye, S., & Maji, S.K. (2025).
Peptide-based functional amyloid hydrogel enhances wound healing in normal and diabetic rat models.
Advanced Healthcare Materials, 14(9), 2403560.
11Kumar, D., Tiwari, A.R., & Namboothiri, I.N.N. (2025).
Curcumin as a cinnamoyl transfer reagent via C–C(CO) bond scissoring in the microwave-assisted reaction with hydroxy-p-QMs.
Journal of Organic Chemistry, 90(28).
10Sakunthala, A., & Maji, S.K. (2025).
Deciphering the seed size-dependent cellular internalization mechanism for α-synuclein fibrils.
Biochemistry, 64(2), 377–400.
2024 4
9Manivannan, V., Inamdar, M.M., & Padinhateeri, R. (2024).
Role of diffusion and reaction of the constituents in spreading of histone modification marks.
PLoS Computational Biology, 20(7), e1012235.
8Datta, D., Navalkar, A., Sakunthala, A., et al. (2024).
Nucleo-cytoplasmic environment modulates spatiotemporal p53 phase separation.
Science Advances, 10(50), eads0427.
7Ahlawat, S., Mehra, S., Gowda, C., Maji, S.K., & Agarwal, V. (2024).
Solid-state NMR assignment of α-synuclein polymorph prepared from helical intermediate.
Biomolecular NMR Assignments, 18, 1–8.
6Mukherjee, S., Poudyal, M., Dave, K., Kadu, P., & Maji, S.K. (2024).
Protein misfolding and amyloid nucleation through liquid–liquid phase separation (Review).
Chemical Society Reviews.
2023 4
5Poudyal, M., Patel, K., Gadhe, L., et al. (2023).
Intermolecular interactions underlie protein/peptide phase separation irrespective of sequence and structure at crowded milieu.
Nature Communications, 14, 6199.
4Mahato, J., Mukherjee, R., Bose, A., et al. (2023).
Sensitized emission imaging allows nanoscale surface polarity mapping of α-synuclein amyloid fibrils.
ACS Chemical Neuroscience.
3Kadam, S., Kumari, K., Manivannan, V., et al. (2023).
Predicting scale-dependent chromatin polymer properties from systematic coarse-graining.
Nature Communications, 14(1), 4108.
2Mukherjee, S., Sakunthala, A., Gadhe, L., et al. (2023).
Liquid–liquid phase separation of α-synuclein.
Journal of Molecular Biology, 435(1), 167713.
2022 1
1Poudyal, M., Sakunthala, A., Mukherjee, S., Gadhe, L., & Maji, S.K. (2022).
Phase separation and other forms of α-synuclein self-assembly.
