FS
Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
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Ubx5‐Cdc48 assists the protease Wss1 at DNA‐protein crosslink sites in yeast | EMBO journal | 2023 | 74 | 94 | |||
SUMO in the regulation of DNA repair and transcription at nuclear pores | FEBS letters | 2023 | 53 | 22 | |||
Antisense-mediated repression of SAGA-dependent genes involves the HIR histone chaperone | Nucleic acids research | 2022 | 65 | 45 | |||
Antisense non-coding transcription represses the PHO5 model gene at the level of promoter chromatin structure | PLOS genetics | 2022 | 60 | 17 | |||
SUMO orchestrates multiple alternative DNA-protein crosslink repair pathways | Cell reports | 2021 | 214 | 69 | |||
Fine Chromatin-Driven Mechanism of Transcription Interference by Antisense Noncoding Transcription | Cell reports | 2020 | 67 | 29 | |||
The Aspartic Protease Ddi1 Contributes to DNA-Protein Crosslink Repair in Yeast | Molecular Cell | 2020 | 380 | 1 | |||
The mRNA export adaptor Yra1 contributes to DNA double-strand break repair through its C-box domain | PloS one | 2019 | 79 | 26 | |||
Regulation of Gene Expression and Replication Initiation by Non‐Coding Transcription: A Model Based on Reshaping Nucleosome‐Depleted Regions | BioEssays | 2019 | 45 | 0 | |||
The functional complexity of the RNA-binding protein Yra1: mRNA biogenesis, genome stability and DSB repair | Current genetics | 2019 | 45 | 0 | |||
Noncoding transcription influences the replication initiation program through chromatin regulation | Genome research | 2018 | 60 | 15 | |||
Translesion synthesis DNA polymerase η exhibits a specific RNA extension activity and a transcription-associated function | Scientific reports | 2017 | 68 | 25 | |||
Role of chromatin, environmental changes and single cell heterogeneity in non-coding transcription and gene regulation | Current opinion in cell biology | 2015 | 509 | 0 | |||
Sumoylation and transcription regulation at nuclear pores | Chromosoma | 2015 | 507 | 222 | |||
Role of histone modifications and early termination in pervasive transcription and antisense-mediated gene silencing in yeast | Nucleic acids research | 2014 | 727 | 539 | |||
Bimodal expression of PHO84 is modulated by early termination of antisense transcription | Nature structural & molecular biology | 2013 | 831 | 544 | |||
Gene loops and HDACs to promote transcription directionality | Nucleus | 2013 | 507 | 0 | |||
The nuclear pore regulates GAL1 gene transcription by controlling the localization of the SUMO protease Ulp1 | Molecular cell | 2013 | 676 | 1 | |||
Structural basis for polyadenosine-RNA binding by Nab2 Zn fingers and its function in mRNA nuclear export | Structure | 2012 | 731 | 394 | |||
Ubiquitin and assembly of export competent mRNP | Biochimica et biophysica acta | 2012 | 619 | 0 | |||
Keeping mRNPs in check during assembly and nuclear export | Nature reviews. Molecular cell biology | 2011 | 704 | 0 | |||
Connecting the transcription site to the nuclear pore: a multi-tether process that regulates gene expression | Journal of cell science | 2010 | 565 | 307 | |||
Ubiquitin-mediated mRNP dynamics and surveillance prior to budding yeast mRNA export | Genes & development | 2010 | 634 | 0 | |||
Bidirectional promoters generate pervasive transcription in yeast | Nature | 2009 | 631 | 0 | |||
Trans-acting antisense RNAs mediate transcriptional gene cosuppression in S. cerevisiae | Genes & development | 2009 | 572 | 0 | |||
THO/Sub2p functions to coordinate 3'-end processing with gene-nuclear pore association | Cell | 2008 | 632 | 0 | |||
Regulation of mRNP dynamics along the export pathway | FEBS letters | 2008 | 532 | 0 | |||
Antisense RNA stabilization induces transcriptional gene silencing via histone deacetylation in S. cerevisiae | Cell | 2007 | 667 | 0 | |||
Coordination of Hpr1 and ubiquitin binding by the UBA domain of the mRNA export factor Mex67 | Molecular biology of the cell | 2007 | 1,219 | 529 | |||
Ubiquitin-associated domain of Mex67 synchronizes recruitment of the mRNA export machinery with transcription | Proceedings of the National Academy of Sciences of the United States of America | 2006 | 517 | 0 | |||
Cotranscriptional recruitment to the mRNA export receptor Mex67p contributes to nuclear pore anchoring of activated genes | Molecular and cellular biology | 2006 | 592 | 1 | |||
Perinuclear Mlp proteins downregulate gene expression in response to a defect in mRNA export | EMBO journal | 2005 | 603 | 1 | |||
mRNA export: an assembly line from genes to nuclear pores | Current opinion in cell biology | 2004 | 525 | 0 | |||
Interactions of processed Nef (58-206) with virion proteins of HIV type 1 | AIDS research and human retroviruses | 2004 | 620 | 0 | |||
Nuclear export of RNA | Biology of the cell | 2004 | 543 | 0 | |||
Deubiquitination, a new player in Golgi to endoplasmic reticulum retrograde transport | The Journal of biological chemistry | 2003 | 605 | 0 | |||
Ubp3 requires a cofactor, Bre5, to specifically de-ubiquitinate the COPII protein, Sec23 | Nature cell biology | 2003 | 612 | 0 | |||
The interplay of nuclear mRNP assembly, mRNA surveillance and export | Trends in cell biology | 2003 | 600 | 0 | |||
Coupling of termination, 3' processing, and mRNA export | Molecular and cellular biology | 2002 | 526 | 0 | |||
Docking of HIV-1 Vpr to the Nuclear Envelope Is Mediated by the Interaction with the Nucleoporin hCG1 | The Journal of biological chemistry | 2002 | 90 | 58 | |||
Stable mRNP formation and export require cotranscriptional recruitment of the mRNA export factors Yra1p and Sub2p by Hpr1p | Molecular and cellular biology | 2002 | 555 | 0 | |||
The yeast hnRNP-Like proteins Yra1p and Yra2p participate in mRNA export through interaction with Mex67p | Molecular and cellular biology | 2001 | 639 | 0 | |||
Nuclear export of mRNA | FEBS letters | 2001 | 440 | 0 | |||
mRNA export: travelling with DEAD box proteins | Current biology | 2001 | 583 | 0 |