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  • Author: Levy ED
  • References

Author: Levy ED


References 21 references


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  • Heidenreich M, et al. (2022) Synthetic condensate size correlates with yeast replicative cell age. MicroPubl Biol 2022 PMID:35673323
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  • Dubreuil B and Levy ED (2021) Abundance Imparts Evolutionary Constraints of Similar Magnitude on the Buried, Surface, and Disordered Regions of Proteins. Front Mol Biosci 8:626729 PMID:33996892
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  • Ulman A, et al. (2021) Altered Protein Abundance and Localization Inferred from Sites of Alternative Modification by Ubiquitin and SUMO. J Mol Biol 433(21):167219 PMID:34464654
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  • Zhu M, et al. (2020) Proteomic analysis reveals the direct recruitment of intrinsically disordered regions to stress granules in S. cerevisiae. J Cell Sci 133(13) PMID:32503941
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  • Buchmuller BC, et al. (2019) Pooled clone collections by multiplexed CRISPR-Cas12a-assisted gene tagging in yeast. Nat Commun 10(1):2960 PMID:31273196
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  • Dubreuil B, et al. (2019) YeastRGB: comparing the abundance and localization of yeast proteins across cells and libraries. Nucleic Acids Res 47(D1):D1245-D1249 PMID:30357397
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  • Dubreuil B, et al. (2019) Protein Abundance Biases the Amino Acid Composition of Disordered Regions to Minimize Non-functional Interactions. J Mol Biol 431(24):4978-4992 PMID:31442477
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  • Kaminski Strauss S, et al. (2019) Evolthon: A community endeavor to evolve lab evolution. PLoS Biol 17(3):e3000182 PMID:30925180
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  • Weill U, et al. (2019) Author Correction: Genome-wide SWAp-Tag yeast libraries for proteome exploration. Nat Methods 16(2):205 PMID:30602782
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  • Meurer M, et al. (2018) Genome-wide C-SWAT library for high-throughput yeast genome tagging. Nat Methods 15(8):598-600 PMID:29988096
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  • Weill U, et al. (2018) Genome-wide SWAp-Tag yeast libraries for proteome exploration. Nat Methods 15(8):617-622 PMID:29988094
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  • Kelil A, et al. (2017) Exhaustive search of linear information encoding protein-peptide recognition. PLoS Comput Biol 13(4):e1005499 PMID:28426660
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  • Michnick SW, et al. (2016) The Dihydrofolate Reductase Protein-Fragment Complementation Assay: A Survival-Selection Assay for Large-Scale Analysis of Protein-Protein Interactions. Cold Spring Harb Protoc 2016(11) PMID:27803252
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  • Michnick SW, et al. (2016) Protein-Fragment Complementation Assays for Large-Scale Analysis, Functional Dissection, and Spatiotemporal Dynamic Studies of Protein-Protein Interactions in Living Cells. Cold Spring Harb Protoc 2016(11) PMID:27803260
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  • Kelil A, et al. (2014) Fast and accurate discovery of degenerate linear motifs in protein sequences. PLoS One 9(9):e106081 PMID:25207816
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  • Levy ED, et al. (2014) High-resolution mapping of protein concentration reveals principles of proteome architecture and adaptation. Cell Rep 7(4):1333-40 PMID:24813894
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  • Levy ED, et al. (2012) Cellular crowding imposes global constraints on the chemistry and evolution of proteomes. Proc Natl Acad Sci U S A 109(50):20461-6 PMID:23184996
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  • Levy ED, et al. (2012) Protein abundance is key to distinguish promiscuous from functional phosphorylation based on evolutionary information. Philos Trans R Soc Lond B Biol Sci 367(1602):2594-606 PMID:22889910
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  • Levy ED (2010) A simple definition of structural regions in proteins and its use in analyzing interface evolution. J Mol Biol 403(4):660-70 PMID:20868694
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  • Levy ED, et al. (2010) Cell signaling. Signaling through cooperation. Science 328(5981):983-4 PMID:20489011
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  • Pereira-Leal JB, et al. (2007) Evolution of protein complexes by duplication of homomeric interactions. Genome Biol 8(4):R51 PMID:17411433
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