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Molecular Biology of the Cell|June 25, 2004
The cochaperone HspBP1 inhibits the CHIP ubiquitin ligase and stimulates the maturation of the cystic fibrosis transmembrane conductance regulatorSimon Alberti, Karsten Böhse, Verena Arndt, et al.Molecular Biology of the Cell|April 16, 2020
Reorganization of budding yeast cytoplasm upon energy depletionGuendalina Marini, Elisabeth Nüske, Weihua Leng, et al.Prion|May 8, 2012
Prion formation by a yeast GLFG nucleoporinRandal Halfmann, Jessica R Wright, Simon Alberti, et al.Elife|November 3, 2020
Protein phase separation and its role in tumorigenesisShan Jiang, Johan Bourghardt Fagman, Changyan Chen, et al.Nature Metabolism|April 20, 2021
Reciprocal regulation of cellular mechanics and metabolismTom M J Evers, Liam J Holt, Simon Alberti, et al.Molecular Biology of the Cell|June 22, 2012
Molecular chaperones and stress-inducible protein-sorting factors coordinate the spatiotemporal distribution of protein aggregatesLiliana Malinovska, Sonja Kroschwald, Matthias C Munder, et al.Proceedings of the National Academy of Sciences of the United States of America|May 6, 2015
Dictyostelium discoideum has a highly Q/N-rich proteome and shows an unusual resilience to protein aggregationLiliana Malinovska, Sandra Palm, Kimberley Gibson, et al.Nature Communications|June 15, 2019
The prion-like domain of Drosophila Imp promotes axonal transport of RNP granules in vivoJeshlee Vijayakumar, Charlène Perrois, Marjorie Heim, et al.Plos Biology|June 18, 2014
Fusion of protein aggregates facilitates asymmetric damage segregationMiguel Coelho, Steven J Lade, Simon Alberti, et al.The Journal of Biological Chemistry|September 26, 2002
Ubiquitylation of BAG-1 suggests a novel regulatory mechanism during the sorting of chaperone substrates to the proteasomeSimon Alberti, Jens Demand, Claudia Esser, et al.Pageof 12