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  • Author: Bhargava P
  • References

Author: Bhargava P


References 22 references


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  • Arimbasseri AG, et al. (2024) Increased histone acetylation is the signature of repressed state on the genes transcribed by RNA polymerase III. Gene 893:147958 PMID:37923095
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  • Vinayachandran V and Bhargava P (2022) Structural Features of the Nucleosomal DNA Modulate the Functional Binding of a Transcription Factor and Productive Transcription. Front Genet 13:870700 PMID:35646068
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  • Shukla A, et al. (2020) Transcription-dependent enrichment of the yeast FACT complex influences nucleosome dynamics on the RNA polymerase III-transcribed genes. RNA 27(3):273-90 PMID:33277439
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  • Bhalla P, et al. (2019) Interactome of the yeast RNA polymerase III transcription machinery constitutes several chromatin modifiers and regulators of the genes transcribed by RNA polymerase II. Gene 702:205-214 PMID:30593915
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  • Bhalla P, et al. (2019) Yeast PAF1 complex counters the pol III accumulation and replication stress on the tRNA genes. Sci Rep 9(1):12892 PMID:31501524
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  • Shukla A and Bhargava P (2018) Regulation of tRNA gene transcription by the chromatin structure and nucleosome dynamics. Biochim Biophys Acta Gene Regul Mech 1861(4):295-309 PMID:29313808
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  • Belagal P, et al. (2016) Decoding the principles underlying the frequency of association with nucleoli for RNA polymerase III-transcribed genes in budding yeast. Mol Biol Cell 27(20):3164-3177 PMID:27559135
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  • Vernekar DV and Bhargava P (2015) Yeast Bud27 modulates the biogenesis of Rpc128 and Rpc160 subunits and the assembly of RNA polymerase III. Biochim Biophys Acta 1849(11):1340-53 PMID:26423792
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  • Dewari PS and Bhargava P (2014) Genome-wide mapping of yeast histone chaperone anti-silencing function 1 reveals its role in condensin binding with chromatin. PLoS One 9(9):e108652 PMID:25264624
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  • Albert B, et al. (2013) Systematic characterization of the conformation and dynamics of budding yeast chromosome XII. J Cell Biol 202(2):201-10 PMID:23878273
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  • Kumar Y and Bhargava P (2013) A unique nucleosome arrangement, maintained actively by chromatin remodelers facilitates transcription of yeast tRNA genes. BMC Genomics 14:402 PMID:23767421
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  • Mahapatra S, et al. (2011) Yeast H2A.Z, FACT complex and RSC regulate transcription of tRNA gene through differential dynamics of flanking nucleosomes. Nucleic Acids Res 39(10):4023-34 PMID:21266479
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  • Bhargava P (2010) Epigenetics to proteomics: from yeast to brain. Proteomics 10(4):749-70 PMID:19834912
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  • Vinayachandran V, et al. (2009) Multiple sequence-directed possibilities provide a pool of nucleosome position choices in different states of activity of a gene. Epigenetics Chromatin 2(1):4 PMID:19291282
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  • Arimbasseri AG and Bhargava P (2008) Chromatin structure and expression of a gene transcribed by RNA polymerase III are independent of H2A.Z deposition. Mol Cell Biol 28(8):2598-607 PMID:18268003
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  • Shivaswamy S and Bhargava P (2006) Positioned nucleosomes due to sequential remodeling of the yeast U6 small nuclear RNA chromatin are essential for its transcriptional activation. J Biol Chem 281(15):10461-72 PMID:16461347
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  • Pusarla RH and Bhargava P (2005) Histones in functional diversification. Core histone variants. FEBS J 272(20):5149-68 PMID:16218948
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  • Shivaswamy S, et al. (2004) High-level activation of transcription of the yeast U6 snRNA gene in chromatin by the basal RNA polymerase III transcription factor TFIIIC. Mol Cell Biol 24(9):3596-606 PMID:15082757
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  • Mishra AK, et al. (2003) The transcriptional activator GAL4-VP16 regulates the intra-molecular interactions of the TATA-binding protein. J Biosci 28(4):423-36 PMID:12799489
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  • Vanathi P, et al. (2003) Regulation of activity of the yeast TATA-binding protein through intra-molecular interactions. J Biosci 28(4):413-21 PMID:12799488
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  • Bhargava P and Kassavetis GA (1999) Abortive initiation by Saccharomyces cerevisiae RNA polymerase III. J Biol Chem 274(37):26550-6 PMID:10473618
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  • Bhargava P and Chatterji D (1988) Spectroscopic studies on the mode of binding of ATP, UTP and alpha-amanitin with yeast RNA polymerase II. FEBS Lett 241(1-2):33-7 PMID:3058514
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