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  • Author: Sigel RK
  • References

Author: Sigel RK


References 11 references


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  • Egloff D, et al. (2016) Sequence-Specific Post-Synthetic Oligonucleotide Labeling for Single-Molecule Fluorescence Applications. ACS Chem Biol 11(9):2558-67 PMID:27409145
    • SGD Paper
    • DOI full text
    • PubMed
  • Kowerko D, et al. (2015) Cation-induced kinetic heterogeneity of the intron-exon recognition in single group II introns. Proc Natl Acad Sci U S A 112(11):3403-8 PMID:25737541
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    • PubMed
  • Schmitz AG, et al. (2015) Strategy for Internal Labeling of Large RNAs with Minimal Perturbation by Using Fluorescent PNA. Chembiochem 16(9):1302-6 PMID:25872497
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  • Skilandat M and Sigel RK (2014) The role of Mg(II) in DNA cleavage site recognition in group II intron ribozymes: solution structure and metal ion binding sites of the RNA-DNA complex. J Biol Chem 289(30):20650-63 PMID:24895129
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  • Donghi D, et al. (2013) The structural stabilization of the κ three-way junction by Mg(II) represents the first step in the folding of a group II intron. Nucleic Acids Res 41(4):2489-504 PMID:23275550
    • SGD Paper
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  • Cardo L, et al. (2012) Single molecule FRET characterization of large ribozyme folding. Methods Mol Biol 848:227-51 PMID:22315073
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  • Erat MC, et al. (2010) Metal ion-N7 coordination in a ribozyme branch domain by NMR. J Inorg Biochem 104(5):611-3 PMID:20170966
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    • PubMed
  • Erat MC and Sigel RK (2008) Divalent metal ions tune the self-splicing reaction of the yeast mitochondrial group II intron Sc.ai5gamma. J Biol Inorg Chem 13(6):1025-36 PMID:18528718
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    • PubMed
  • Kruschel D and Sigel RK (2008) Divalent metal ions promote the formation of the 5'-splice site recognition complex in a self-splicing group II intron. J Inorg Biochem 102(12):2147-54 PMID:18842303
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  • Steiner M, et al. (2008) Single-molecule studies of group II intron ribozymes. Proc Natl Acad Sci U S A 105(37):13853-8 PMID:18772388
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  • Erat MC, et al. (2007) Solution structure of domain 6 from a self-splicing group II intron ribozyme: a Mg(2+) binding site is located close to the stacked branch adenosine. Chembiochem 8(3):306-14 PMID:17200997
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