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  • Author: Tomko RJ
  • References

Author: Tomko RJ


References 19 references


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  • Gutierrez-Morton E, et al. (2024) The polySUMOylation axis promotes nucleolar release of Tof2 for mitotic exit. Cell Rep 43(7):114492 PMID:39002125
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  • Li Y, et al. (2023) Proteasomes: Isolation and Activity Assays. Curr Protoc 3(4):e717 PMID:37026813
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  • Warnock JL, et al. (2023) Assembly chaperone Nas6 selectively destabilizes 26S proteasomes with defective regulatory particle-core particle interfaces. J Biol Chem 299(2):102894 PMID:36634850
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  • Higgins R, et al. (2020) The Cdc48 Complex Alleviates the Cytotoxicity of Misfolded Proteins by Regulating Ubiquitin Homeostasis. Cell Rep 32(2):107898 PMID:32668237
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  • Nemec AA and Tomko RJ (2020) A suite of polymerase chain reaction-based peptide tagging plasmids for epitope-targeted enzymatic functionalization of yeast proteins. Yeast 37(5-6):327-335 PMID:32401365
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  • Howell LA, et al. (2019) Proteasome subunit α1 overexpression preferentially drives canonical proteasome biogenesis and enhances stress tolerance in yeast. Sci Rep 9(1):12418 PMID:31455793
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  • Koch BA, et al. (2019) The anaphase-promoting complex regulates the degradation of the inner nuclear membrane protein Mps3. J Cell Biol 218(3):839-854 PMID:30737264
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  • Nemec AA, et al. (2019) An Allosteric Interaction Network Promotes Conformation State-Dependent Eviction of the Nas6 Assembly Chaperone from Nascent 26S Proteasomes. Cell Rep 26(2):483-495.e5 PMID:30625330
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  • Reed RG and Tomko RJ (2019) Engineered disulfide crosslinking to measure conformational changes in the 26S proteasome. Methods Enzymol 619:145-159 PMID:30910019
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  • Eisele MR, et al. (2018) Expanded Coverage of the 26S Proteasome Conformational Landscape Reveals Mechanisms of Peptidase Gating. Cell Rep 24(5):1301-1315.e5 PMID:30067984
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  • Nemec AA, et al. (2017) Autophagic clearance of proteasomes in yeast requires the conserved sorting nexin Snx4. J Biol Chem 292(52):21466-21480 PMID:29109144
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  • Li Y, et al. (2015) Proteasomes: Isolation and Activity Assays. Curr Protoc Cell Biol 67:3.43.1-3.43.20 PMID:26061243
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  • Tomko RJ, et al. (2015) A Single α Helix Drives Extensive Remodeling of the Proteasome Lid and Completion of Regulatory Particle Assembly. Cell 163(2):432-44 PMID:26451487
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  • Tomko RJ and Hochstrasser M (2014) The intrinsically disordered Sem1 protein functions as a molecular tether during proteasome lid biogenesis. Mol Cell 53(3):433-43 PMID:24412063
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  • Sá-Moura B, et al. (2013) A conserved protein with AN1 zinc finger and ubiquitin-like domains modulates Cdc48 (p97) function in the ubiquitin-proteasome pathway. J Biol Chem 288(47):33682-33696 PMID:24121501
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  • Tomko RJ and Hochstrasser M (2011) Incorporation of the Rpn12 subunit couples completion of proteasome regulatory particle lid assembly to lid-base joining. Mol Cell 44(6):907-17 PMID:22195964
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  • Heinemann IU, et al. (2010) 3'-5' tRNAHis guanylyltransferase in bacteria. FEBS Lett 584(16):3567-72 PMID:20650272
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  • Tomko RJ, et al. (2010) Heterohexameric ring arrangement of the eukaryotic proteasomal ATPases: implications for proteasome structure and assembly. Mol Cell 38(3):393-403 PMID:20471945
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  • Funakoshi M, et al. (2009) Multiple assembly chaperones govern biogenesis of the proteasome regulatory particle base. Cell 137(5):887-99 PMID:19446322
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