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  • Author: Hoskins AA
  • References

Author: Hoskins AA


References 32 references


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  • Fu X and Hoskins AA (2025) Dynamics and evolutionary conservation of B complex protein recruitment during spliceosome activation. Nucleic Acids Res 53(4) PMID:39995036
    • SGD Paper
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  • Liu Y, et al. (2025) RNA modifications and Prp24 coordinate Lsm2-8 binding dynamics during S. cerevisiae U6 snRNP assembly. J Biol Chem 301(5):108497 PMID:40216252
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  • Beard JP, et al. (2024) Structure-Activity Relationship Study of Splicing Modulators on Hsh155/SF3B1 through Chemical Synthesis and Yeast Genetics. ACS Med Chem Lett 15(12):2225-2230 PMID:39691513
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  • Carrocci TJ, et al. (2024) Functional analysis of the zinc finger modules of the Saccharomyces cerevisiae splicing factor Luc7. RNA 30(8):1058-1069 PMID:38719745
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  • Senn KA and Hoskins AA (2024) Mechanisms and regulation of spliceosome-mediated pre-mRNA splicing in Saccharomyces cerevisiae. Wiley Interdiscip Rev RNA 15(4):e1866 PMID:38972853
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  • Lipinski KA, et al. (2023) Biochemical and genetic evidence supports Fyv6 as a second-step splicing factor in Saccharomyces cerevisiae. RNA 29(11):1792-1802 PMID:37625852
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  • Fu X, et al. (2022) Identification of transient intermediates during spliceosome activation by single molecule fluorescence microscopy. Proc Natl Acad Sci U S A 119(48):e2206815119 PMID:36417433
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  • Hansen SR, et al. (2022) Multi-step recognition of potential 5' splice sites by the Saccharomyces cerevisiae U1 snRNP. Elife 11 PMID:35959885
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  • Lipinski KA, et al. (2022) Yeast U6 snRNA made by RNA polymerase II is less stable but functional. RNA 28(12):1606-1620 PMID:36195346
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  • van der Feltz C, et al. (2021) Saccharomyces cerevisiae Ecm2 Modulates the Catalytic Steps of pre-mRNA Splicing. RNA 27(5):591-603 PMID:33547186
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  • Kaur H, et al. (2020) Impact of cancer-associated mutations in Hsh155/SF3b1 HEAT repeats 9-12 on pre-mRNA splicing in Saccharomyces cerevisiae. PLoS One 15(4):e0229315 PMID:32320410
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  • Beier DH, et al. (2019) Dynamics of the DEAD-box ATPase Prp5 RecA-like domains provide a conformational switch during spliceosome assembly. Nucleic Acids Res 47(20):10842-10851 PMID:31712821
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  • Hansen SR, et al. (2019) Chemical Inhibition of Pre-mRNA Splicing in Living Saccharomyces cerevisiae. Cell Chem Biol 26(3):443-448.e3 PMID:30639260
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  • Carrocci TJ, et al. (2018) Functional analysis of Hsh155/SF3b1 interactions with the U2 snRNA/branch site duplex. RNA 24(8):1028-1040 PMID:29752352
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  • van der Feltz C, et al. (2018) Stress-induced Pseudouridylation Alters the Structural Equilibrium of Yeast U2 snRNA Stem II. J Mol Biol 430(4):524-536 PMID:29079482
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  • Carrocci TJ, et al. (2017) SF3b1 mutations associated with myelodysplastic syndromes alter the fidelity of branchsite selection in yeast. Nucleic Acids Res 45(8):4837-4852 PMID:28062854
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  • Didychuk AL, et al. (2017) Usb1 controls U6 snRNP assembly through evolutionarily divergent cyclic phosphodiesterase activities. Nat Commun 8(1):497 PMID:28887445
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  • Larson JD and Hoskins AA (2017) Dynamics and consequences of spliceosome E complex formation. Elife 6 PMID:28829039
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  • Panchapakesan SSS, et al. (2017) Ribonucleoprotein purification and characterization using RNA Mango. RNA 23(10):1592-1599 PMID:28747322
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  • Cornilescu G, et al. (2016) Structural Analysis of Multi-Helical RNAs by NMR-SAXS/WAXS: Application to the U4/U6 di-snRNA. J Mol Biol 428(5 Pt A):777-789 PMID:26655855
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  • Hoskins AA, et al. (2016) Single molecule analysis reveals reversible and irreversible steps during spliceosome activation. Elife 5 PMID:27244240
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  • Rodgers ML, et al. (2016) A multi-step model for facilitated unwinding of the yeast U4/U6 RNA duplex. Nucleic Acids Res 44(22):10912-10928 PMID:27484481
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  • Rodgers ML, et al. (2016) Conformational dynamics of stem II of the U2 snRNA. RNA 22(2):225-36 PMID:26631165
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  • Rodgers ML, et al. (2015) Rapid isolation and single-molecule analysis of ribonucleoproteins from cell lysate by SNAP-SiMPull. RNA 21(5):1031-41 PMID:25805862
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  • Anderson EG and Hoskins AA (2014) Single molecule approaches for studying spliceosome assembly and catalysis. Methods Mol Biol 1126:217-41 PMID:24549668
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  • Carrocci TJ and Hoskins AA (2014) Imaging of RNAs in live cells with spectrally diverse small molecule fluorophores. Analyst 139(1):44-7 PMID:24187681
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  • Trang VH, et al. (2014) Chemoenzymatic synthesis of bifunctional polyubiquitin substrates for monitoring ubiquitin chain remodeling. Chembiochem 15(11):1563-8 PMID:24961813
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  • Crawford DJ, et al. (2013) Single-molecule colocalization FRET evidence that spliceosome activation precedes stable approach of 5' splice site and branch site. Proc Natl Acad Sci U S A 110(17):6783-8 PMID:23569281
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  • Shcherbakova I, et al. (2013) Alternative spliceosome assembly pathways revealed by single-molecule fluorescence microscopy. Cell Rep 5(1):151-65 PMID:24075986
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  • Hoskins AA, et al. (2011) New insights into the spliceosome by single molecule fluorescence microscopy. Curr Opin Chem Biol 15(6):864-70 PMID:22057211
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  • Hoskins AA, et al. (2011) Ordered and dynamic assembly of single spliceosomes. Science 331(6022):1289-95 PMID:21393538
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  • Crawford DJ, et al. (2008) Visualizing the splicing of single pre-mRNA molecules in whole cell extract. RNA 14(1):170-9 PMID:18025254
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