Rohit V. Pappu

Affiliations: 
Biomedical Engineering Washington University, Saint Louis, St. Louis, MO 
Area:
General Biophysics, Condensed Matter Physics
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"Rohit Pappu"

Parents

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David L. Weaver grad student 1990-1996 Tufts (Physics Tree)
Jay W. Ponder post-doc 1996-1998 Washington University (Physics Tree)
George D. Rose post-doc 1998-2001 Johns Hopkins (Chemistry Tree)

Children

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Alan A. Chen grad student 2009 Washington University
Andreas Vitalis grad student 2009 Washington University
Matthew A. Wyczalkowski grad student 2009 Washington University
Akansha Saxena grad student 2010 Washington University
Scott L. Crick grad student 2005-2011 Washington University (Chemistry Tree)
Nicholas J. Lyle grad student 2013 Washington University
Albert H. Mao grad student 2014 Washington University
Jeong-Mo Choi post-doc 2016-2019 Washington University (Chemistry Tree)
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Publications

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Dar F, Cohen SR, Mitrea DM, et al. (2023) Biomolecular condensates form spatially inhomogeneous network fluids. Research Square
Dar F, Cohen SR, Mitrea DM, et al. (2023) Biomolecular condensates form spatially inhomogeneous network fluids. Biorxiv : the Preprint Server For Biology
Farag M, Borcherds WM, Bremer A, et al. (2023) Phase separation of protein mixtures is driven by the interplay of homotypic and heterotypic interactions. Nature Communications. 14: 5527
Lalmansingh JM, Keeley AT, Ruff KM, et al. (2023) SOURSOP: A Python Package for the Analysis of Simulations of Intrinsically Disordered Proteins. Journal of Chemical Theory and Computation
Lalmansingh JM, Keeley AT, Ruff KM, et al. (2023) SOURSOP: A Python package for the analysis of simulations of intrinsically disordered proteins. Biorxiv : the Preprint Server For Biology
Ruff KM, Choi YH, Cox D, et al. (2022) Sequence grammar underlying the unfolding and phase separation of globular proteins. Molecular Cell
Zeng X, Ruff KM, Pappu RV. (2022) Competing interactions give rise to two-state behavior and switch-like transitions in charge-rich intrinsically disordered proteins. Proceedings of the National Academy of Sciences of the United States of America. 119: e2200559119
Zeng X, Liu C, Fossat MJ, et al. (2021) Design of intrinsically disordered proteins that undergo phase transitions with lower critical solution temperatures. Apl Materials. 9
Choi JM, Hyman AA, Pappu RV. (2020) Generalized models for bond percolation transitions of associative polymers. Physical Review. E. 102: 042403
Dar F, Pappu R. (2020) Phase Separation: Restricting the sizes of condensates Elife. 9
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