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Publications

  1. S Ray, N Singh, R Kumar, K Patel, S Pandey, D Datta, J Mahato, R Panigrahi, A Navalkar, S Mehra, L Gadhe, D Chatterjee, AS Sawner, S Maiti, S Bhatia, J Gerez, A Chowdhury, A Kumar, R Padinhateeri, R Riek, G Krishnamoorthy and SK Maji(2020), α-Synuclein aggregation nucleates through liquid-liquid phase separation. Nature Chemistry, 12:705–716(2020); DOI:10.1038/s41557-020-0465-9 (View).
  1. A Navalkar, S Ghosh, S Pandey, A Paul, D Datta and SK Maji (2019), Prion-like p53 amyloids in cancer. Biochemistry, 59 (2):146–155. DOI:10.1021/acs.biochem.9b00796 (View).
  1. S Ray, N Singh, S Pandey, R Kumar, L Gadhe, D Datta, K Patel, J Mahato, A Navalkar, R Panigrahi, D Chatterjee, S Maiti, S Bhatia, S Mehra, A Singh, J Gerez, A Chowdhury, A Kumar, R Padinhateeri, R Riek, G Krishnamoorthy and SK Maji (2019), Liquid-liquid phase separation and liquid-to-solid transition mediate α-synuclein amyloid fibril containing hydrogel formation. bioRxiv, DOI:10.1101/619858 (View).
  1. RS Jacob, S Das, N Singh, K Patel, D Datta, S Sen, and SK Maji (2018), Amyloids are novel cell adhesive matrices. Biochemical and Biophysical Roles of Cell Surface Molecules.; 1112:79-97; Springer Nature. (View).
  1. GM Mohite, R Kumar, R Panigrahi, A Navalkar, N Singh, D Datta, S Mehra, S Ray, LG Gadhe, S Das, N Singh, D Chatterjee, A Kumar and SK Maji (2018), Comparison of kinetics, toxicity, oligomers formation and membrane binding capacity of α-synuclein familial mutations at A53 site including newly discovered A53V mutation. Biochemistry, 57(35):5183-5187; DOI:10.1021/acs.biochem.8b00314. (View).