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  • Author: Basu U
  • References

Author: Basu U


References 12 references


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  • Goovaerts Q, et al. (2023) Structures illustrate step-by-step mitochondrial transcription initiation. Nature 622(7984):872-879 PMID:37821701
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  • Basu U, et al. (2020) The C-terminal tail of the yeast mitochondrial transcription factor Mtf1 coordinates template strand alignment, DNA scrunching and timely transition into elongation. Nucleic Acids Res 48(5):2604-2620 PMID:31980825
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  • Basu U, et al. (2020) Structure, mechanism, and regulation of mitochondrial DNA transcription initiation. J Biol Chem 295(52):18406-18425 PMID:33127643
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  • Basu U, et al. (2020) The C-terminal tails of the mitochondrial transcription factors Mtf1 and TFB2M are part of an autoinhibitory mechanism that regulates DNA binding. J Biol Chem 295(20):6823-6830 PMID:32241911
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  • Sohn BK, et al. (2020) The dynamic landscape of transcription initiation in yeast mitochondria. Nat Commun 11(1):4281 PMID:32855416
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  • Bird JG, et al. (2018) Highly efficient 5' capping of mitochondrial RNA with NAD+ and NADH by yeast and human mitochondrial RNA polymerase. Elife 7 PMID:30526856
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  • Ray P, et al. (2008) The Saccharomyces cerevisiae 60 S ribosome biogenesis factor Tif6p is regulated by Hrr25p-mediated phosphorylation. J Biol Chem 283(15):9681-91 PMID:18256024
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  • Basu U, et al. (2004) Reverse genetic analysis of the glutathione metabolic pathway suggests a novel role of PHGPX and URE2 genes in aluminum resistance in Saccharomyces cerevisiae. Mol Genet Genomics 271(5):627-37 PMID:15133656
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  • Southron JL, et al. (2004) Complementation of Saccharomyces cerevisiae ccc2 mutant by a putative P1B-ATPase from Brassica napus supports a copper-transporting function. FEBS Lett 566(1-3):218-22 PMID:15147898
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  • Anoop VM, et al. (2003) Modulation of citrate metabolism alters aluminum tolerance in yeast and transgenic canola overexpressing a mitochondrial citrate synthase. Plant Physiol 132(4):2205-17 PMID:12913175
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  • Basu U, et al. (2003) Phosphorylation of mammalian eukaryotic translation initiation factor 6 and its Saccharomyces cerevisiae homologue Tif6p: evidence that phosphorylation of Tif6p regulates its nucleocytoplasmic distribution and is required for yeast cell growth. Mol Cell Biol 23(17):6187-99 PMID:12917340
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  • Basu U, et al. (2001) The Saccharomyces cerevisiae TIF6 gene encoding translation initiation factor 6 is required for 60S ribosomal subunit biogenesis. Mol Cell Biol 21(5):1453-62 PMID:11238882
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