Tomas Sneideris

Tomas Sneideris

University of Cambridge

H-index: 14

Europe-United Kingdom

About Tomas Sneideris

Tomas Sneideris, With an exceptional h-index of 14 and a recent h-index of 14 (since 2020), a distinguished researcher at University of Cambridge, specializes in the field of Amyloid proteins, Antimicrobial proteins, Liquid-liquid phase separation.

His recent articles reflect a diverse array of research interests and contributions to the field:

Biomolecular condensates with complex architectures via controlled nucleation

Thermodynamics of temperature modulation in biomolecular phase separation

The Alzheimer’s Aβ peptide forms biomolecular condensates that trigger amyloid aggregation

Tandem-repeat proteins introduce tuneable properties to engineered biomolecular condensates

Temperature-induced changes in protein interactions control RNA recruitment to G3BP1 condensates

Targeting nucleic acid phase transitions as a mechanism of action for antimicrobial peptides

Linking modulation of bio-molecular phase behaviour with collective interactions

Dominant energetics in multi-component bio-molecular condensates

Tomas Sneideris Information

University

Position

Yusuf Hamied Department of Chemistry

Citations(all)

653

Citations(since 2020)

625

Cited By

189

hIndex(all)

14

hIndex(since 2020)

14

i10Index(all)

17

i10Index(since 2020)

17

Email

University Profile Page

Google Scholar

Tomas Sneideris Skills & Research Interests

Amyloid proteins

Antimicrobial proteins

Liquid-liquid phase separation

Top articles of Tomas Sneideris

Biomolecular condensates with complex architectures via controlled nucleation

2024/4/26

Thermodynamics of temperature modulation in biomolecular phase separation

Biophysical Journal

2024/2/8

Tomas Sneideris
Tomas Sneideris

H-Index: 8

Daoyuan Qian
Daoyuan Qian

H-Index: 0

The Alzheimer’s Aβ peptide forms biomolecular condensates that trigger amyloid aggregation

bioRxiv

2024/1/15

Tandem-repeat proteins introduce tuneable properties to engineered biomolecular condensates

bioRxiv

2024

Tomas Sneideris
Tomas Sneideris

H-Index: 8

Jerelle A Joseph
Jerelle A Joseph

H-Index: 8

Temperature-induced changes in protein interactions control RNA recruitment to G3BP1 condensates

bioRxiv

2024

Tomas Sneideris
Tomas Sneideris

H-Index: 8

Daoyuan Qian
Daoyuan Qian

H-Index: 0

Targeting nucleic acid phase transitions as a mechanism of action for antimicrobial peptides

Nature Communications

2023/11/7

Linking modulation of bio-molecular phase behaviour with collective interactions

bioRxiv

2023/11/5

Dominant energetics in multi-component bio-molecular condensates

bioRxiv

2023/6/13

Daoyuan Qian
Daoyuan Qian

H-Index: 0

Tomas Sneideris
Tomas Sneideris

H-Index: 8

Dominance metric in multi-component binary phase equilibria

bioRxiv

2023/6/13

Quantifying collective interactions in biomolecular phase separation

2023/6/3

Condensate partitioning governs the mechanism of action of FUS phase separation modulators

2023/6/3

Surface patches induce nonspecific binding and phase separation of antibodies

Proceedings of the National Academy of Sciences

2023/4/11

ANXA11 biomolecular condensates facilitate protein-lipid phase coupling on lysosomal membranes

BioRxiv

2023/3/24

Multidimensional Protein Solubility Optimization with an Ultrahigh-Throughput Microfluidic Platform

Analytical Chemistry

2023/3/17

Modulating nucleic acid phase transitions as a mechanism of action for cell-penetrating antimicrobial peptides

Biorxiv

2023/3/12

Characterizing protein interactions in biomolecular phase separation

Biophysical Journal

2023/2/10

Spatially non-uniform condensates emerge from dynamically arrested phase separation

Nature Communications

2023/2/8

Tomas Sneideris
Tomas Sneideris

H-Index: 8

Daoyuan Qian
Daoyuan Qian

H-Index: 0

Adsorption of RNA to interfaces of biomolecular condensates enables wetting transitions

BioRxiv

2023/1/13

Surface interaction patches link non-specific binding and phase separation of antibodies

bioRxiv

2022/3/7

Multiphase condensates from a kinetically arrested phase transition

bioRxiv

2022/2/10

Tomas Sneideris
Tomas Sneideris

H-Index: 8

Daoyuan Qian
Daoyuan Qian

H-Index: 0

See List of Professors in Tomas Sneideris University(University of Cambridge)