Citation Impact
Citing Papers
Innovative scattering analysis shows that hydrophobic disordered proteins are expanded in water
2017 StandoutScienceNobel
AI-based structure prediction empowers integrative structural analysis of human nuclear pores
2022 Science
Formation, chemical evolution and solidification of the dense liquid phase of calcium (bi)carbonate
2024 StandoutNobel
Membrane curvature regulates the spatial distribution of bulky glycoproteins
2022 StandoutNobel
Developmentally Regulated GTP binding protein 1 (DRG1) controls microtubule dynamics
2017
Considerations and Challenges in Studying Liquid-Liquid Phase Separation and Biomolecular Condensates
2019 Standout
Fluorescence nanoscopy in cell biology
2017 StandoutNobel
Stress-Triggered Phase Separation Is an Adaptive, Evolutionarily Tuned Response
2017
Natural and Designed Proteins Inspired by Extremotolerant Organisms Can Form Condensates and Attenuate Apoptosis in Human Cells
2022 StandoutNobel
The wisdom of crowds: regulating cell function through condensed states of living matter
2017
Protein phase separation and its role in tumorigenesis
2020
The Protein Structure Prediction Revolution and Its Implications for Medicine
2023 StandoutNobel
Nanobodies: site-specific labeling for super-resolution imaging, rapid epitope-mapping and native protein complex isolation
2015
Membrane curvature in cell biology: An integration of molecular mechanisms
2016
E3 ubiquitin ligase Mindbomb 1 facilitates nuclear delivery of adenovirus genomes
2020 StandoutNobel
Liquid phase condensation in cell physiology and disease
2017 StandoutScience
Works of Ruchika Sachdev being referenced
DEAD-box ATPases are global regulators of phase-separated organelles
2019 Nature
RuvB-like ATPases Function in Chromatin Decondensation at the End of Mitosis
2014
Pat1 promotes processing body assembly by enhancing the phase separation of the DEAD-box ATPase Dhh1 and RNA
2019
ATPase activity of the DEAD-box protein Dhh1 controls processing body formation
2016
Dimerization and direct membrane interaction of Nup53 contribute to nuclear pore complex assembly
2012
The C-terminal domain of Nup93 is essential for assembly of the structural backbone of nuclear pore complexes
2011