Jerelle Joseph
#41,319
Most Influential Person Now
Dominican computational chemist
Jerelle Joseph's AcademicInfluence.com Rankings
Jerelle Josephchemistry Degrees
Chemistry
#5178
World Rank
#6312
Historical Rank
Computational Chemistry
#72
World Rank
#72
Historical Rank

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Chemistry
Jerelle Joseph's Degrees
- PhD Chemistry University of California, Berkeley
- Bachelors Chemistry University of the West Indies
Why Is Jerelle Joseph Influential?
(Suggest an Edit or Addition)According to Wikipedia, Jerelle A. Joseph is a computational chemist and academic from Dominica, who is also an advocate for representation and diversity in science. She is the founder of CariScholar, a network connecting students and academics from Caribbean countries.
Jerelle Joseph's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- Reentrant liquid condensate phase of proteins is stabilized by hydrophobic and non-ionic interactions (2020) (156)
- Liquid network connectivity regulates the stability and composition of biomolecular condensates with many components (2020) (96)
- Physics-driven coarse-grained model for biomolecular phase separation with near-quantitative accuracy (2021) (52)
- Nucleosome plasticity is a critical element of chromatin liquid–liquid phase separation and multivalent nucleosome interactions (2020) (45)
- Exploring biomolecular energy landscapes. (2017) (40)
- The effect of atomic ions on model σ-hole bonded complexes of AH3Y (A = C, Si, Ge; Y = F, Cl, Br). (2014) (39)
- Energy Landscapes for Proteins: From Single Funnels to Multifunctional Systems (2019) (37)
- Surface electrostatics govern the emulsion stability of biomolecular condensates (2020) (30)
- Thermodynamics and kinetics of phase separation of protein-RNA mixtures by a minimal model. (2021) (28)
- Valency and Binding Affinity Variations Can Regulate the Multilayered Organization of Protein Condensates with Many Components (2021) (28)
- Size conservation emerges spontaneously in biomolecular condensates formed by scaffolds and surfactant clients (2021) (24)
- Energy Landscape for Fold-Switching in Regulatory Protein RfaH. (2018) (13)
- Cooperative effects in novel LiF∕HF⋯LiF⋯XF (X = F, Cl, Br) clusters. (2013) (12)
- Single particle zeta-potential measurements reveal the role of electrostatics in protein condensate stability (2020) (11)
- Aging can transform single-component protein condensates into multiphase architectures (2022) (11)
- Comparative computational study of model halogen-bonded complexes of FKrCl. (2015) (11)
- Cooperative effects of noncovalent bonds to the Br atom of halogen-bonded H3N...BrZ and HCN...BrZ (Z = F, Br) complexes. (2012) (10)
- A comparative study of model halogen-bonded, π-hole-bonded and cationic complexes involving NCX AND H2O (X = F, Cl, Br) (2015) (9)
- RNA length has a non-trivial effect in the stability of biomolecular condensates formed by RNA-binding proteins (2021) (9)
- Intrinsically Disordered Landscapes for Human CD4 Receptor Peptide. (2018) (8)
- Kinetic interplay between droplet maturation and coalescence modulates shape of aged protein condensates (2021) (8)
- Oligonucleotides can act as superscaffolds that enhance liquid-liquid phase separation of intracellular mixtures (2020) (6)
- Structure, Thermodynamics, and Folding Pathways for a Tryptophan Zipper as a Function of Local Rigidification. (2016) (5)
- Interplay of Hydrogen, Halogen, Lithium and Beryllium Bonds in Complexes of Thiirane (2015) (4)
- Variation of sigma-hole magnitude with M valence electron population in MX(n)Y(4-n) molecules (n = 1-4; M = C, Si, Ge; X, Y = F, Cl, Br). (2014) (4)
- Intermolecular reorganisation of single-component condensates during ageing promotes multiphase architectures (2021) (4)
- Destabilization of the halogen bond in complexes of protonated NCX (X = F, Cl, Br) molecules (2014) (4)
- The Chromatin Regulator HMGA1a Undergoes Phase Separation in the Nucleus (2021) (3)
- Thermodynamic origins of two-component multiphase condensates of proteins (2023) (3)
- Communication: An unusual halogen-bonding motif: the LiBr···BrF dimer as a model system. (2012) (3)
- Designing multiphase biomolecular condensates by coevolution of protein mixtures (2022) (1)
- Physical determinants of multiphase organisation in multi-component protein/RNA condensates. (2023) (0)
- Can single-component protein condensates form multiphase architectures? (2022) (0)
- A universal code for phase separation of prion-like low complexity domains: Insights from quantitative computer simulations. (2023) (0)
- Aromatic and arginine content drives multiphasic condensation of protein–RNA mixtures (2023) (0)
- Comparison of experimental phase diagrams and residue-level coarse-grained simulations of intrinsically disordered proteins (2022) (0)
- Comment on “Destabilization of the halogen bond in complexes of protonated NCX (X = F, Cl, Br) molecules” [Chem. Phys. Lett. 603 (2014) 37–40] (2015) (0)
- Energy landscapes for protein folding (2018) (0)
- Study on stability, composition, and protein arrangement within biocondensates formed via liquid-liquid phase separation (2022) (0)
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What Schools Are Affiliated With Jerelle Joseph?
Jerelle Joseph is affiliated with the following schools: