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  • Author: Hazbun TR
  • References

Author: Hazbun TR


References 24 references


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  • Chen P, et al. (2023) Unlocking the mysteries of alpha-N-terminal methylation and its diverse regulatory functions. J Biol Chem 299(7):104843 PMID:37209820
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  • Chen P, et al. (2021) Discovering the N-Terminal Methylome by Repurposing of Proteomic Datasets. J Proteome Res 20(9):4231-4247 PMID:34382793
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  • Maresh ME, et al. (2021) A Yeast Chronological Lifespan Assay to Assess Activity of Proteasome Stimulators. Chembiochem 22(15):2553-2560 PMID:34043860
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  • Chen C, et al. (2019) Inferring Gene Regulatory Networks from a Population of Yeast Segregants. Sci Rep 9(1):1197 PMID:30718595
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  • Mishra PK, et al. (2018) Budding yeast CENP-ACse4 interacts with the N-terminus of Sgo1 and regulates its association with centromeric chromatin. Cell Cycle 17(1):11-23 PMID:28980861
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  • Thomas FM, et al. (2017) A Chemogenomic Screening Platform Used to Identify Chemotypes Perturbing HSP90 Pathways. SLAS Discov 22(6):706-719 PMID:28346089
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  • Aslam K and Hazbun TR (2016) Hsp31, a member of the DJ-1 superfamily, is a multitasking stress responder with chaperone activity. Prion 10(2):103-11 PMID:27097320
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  • Aslam K, et al. (2016) The small heat shock protein Hsp31 cooperates with Hsp104 to modulate Sup35 prion aggregation. Prion 10(6):444-465 PMID:27690738
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  • Thapa KS, et al. (2015) The Mps1 kinase modulates the recruitment and activity of Cnn1(CENP-T) at Saccharomyces cerevisiae kinetochores. Genetics 200(1):79-90 PMID:25716979
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  • Tsai CJ, et al. (2015) Hsp31 Is a Stress Response Chaperone That Intervenes in the Protein Misfolding Process. J Biol Chem 290(41):24816-34 PMID:26306045
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  • Bock LJ, et al. (2012) Cnn1 inhibits the interactions between the KMN complexes of the yeast kinetochore. Nat Cell Biol 14(6):614-24 PMID:22561345
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  • Ren L, et al. (2011) Correction: Systematic Two-Hybrid and Comparative Proteomic Analyses Reveal Novel Yeast Pre-mRNA Splicing Factors Connected to Prp19.LID - 10.1371/annotation/62e74a1c-c922-495b-9aaf-eebfe6b85ff5 [doi] PLoS ONE 6(9)
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  • Ren L, et al. (2011) Systematic two-hybrid and comparative proteomic analyses reveal novel yeast pre-mRNA splicing factors connected to Prp19. PLoS One 6(2):e16719 PMID:21386897
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  • Hazbun TR and Miller JP (2006) Genome-Wide Analysis of Protein-Protein Interactions Using a Two-Hybrid Array: Amplification of ORFs. CSH Protoc 2006(4) PMID:22485925
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  • Hazbun TR and Miller JP (2006) Genome-wide analysis of protein-protein interactions using a two-hybrid array: cloning by homologous recombination and high-throughput transformation. CSH Protoc 2006(4) PMID:22485926
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  • Hazbun TR and Miller JP (2006) Genome-wide analysis of protein-protein interactions using a two-hybrid array: high-density robotic screening procedure. CSH Protoc 2006(4) PMID:22485927
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  • Hazbun TR and Miller JP (2006) Genome-wide analysis of protein-protein interactions using a two-hybrid array: storage, maintenance, and working with living arrays. CSH Protoc 2006(4) PMID:22485928
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  • Montpetit B, et al. (2006) Sumoylation of the budding yeast kinetochore protein Ndc10 is required for Ndc10 spindle localization and regulation of anaphase spindle elongation. J Cell Biol 174(5):653-63 PMID:16923829
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  • Gingras AC, et al. (2005) A novel, evolutionarily conserved protein phosphatase complex involved in cisplatin sensitivity. Mol Cell Proteomics 4(11):1725-40 PMID:16085932
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  • Hazbun TR, et al. (2003) Assigning function to yeast proteins by integration of technologies. Mol Cell 12(6):1353-65 PMID:14690591
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    • Reference supplement
  • Shang C, et al. (2003) Kinetochore protein interactions and their regulation by the Aurora kinase Ipl1p. Mol Biol Cell 14(8):3342-55 PMID:12925767
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  • Gera JF, et al. (2002) Array-based methods for identifying protein-protein and protein-nucleic acid interactions. Methods Enzymol 350:499-512 PMID:12073332
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  • Hazbun TR and Fields S (2002) A genome-wide screen for site-specific DNA-binding proteins. Mol Cell Proteomics 1(7):538-43 PMID:12239282
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  • Hazbun TR and Fields S (2001) Networking proteins in yeast. Proc Natl Acad Sci U S A 98(8):4277-8 PMID:11296274
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