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PUBMED FOR HANDHELDS

Journal Abstract Search


324 related items for PubMed ID: 23019220

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  • 2. Patterns of conservation of spliceosomal intron structures and spliceosome divergence in representatives of the diplomonad and parabasalid lineages.
    Hudson AJ, McWatters DC, Bowser BA, Moore AN, Larue GE, Roy SW, Russell AG.
    BMC Evol Biol; 2019 Aug 02; 19(1):162. PubMed ID: 31375061
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  • 7. Chlamydomonas U2, U4 and U6 snRNAs. An evolutionary conserved putative third interaction between U4 and U6 snRNAs which has a counterpart in the U4atac-U6atac snRNA duplex.
    Jakab G, Mougin A, Kis M, Pollák T, Antal M, Branlant C, Solymosy F.
    Biochimie; 1997 Jul 02; 79(7):387-95. PubMed ID: 9352088
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  • 8. Interactions between Giardia duodenalis Sm proteins and their association with spliceosomal snRNAs.
    Gómez V, Wasserman M.
    Parasitol Res; 2017 Feb 02; 116(2):617-626. PubMed ID: 27864674
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  • 10. The conserved 3' end domain of U6atac snRNA can direct U6 snRNA to the minor spliceosome.
    Dietrich RC, Padgett RA, Shukla GC.
    RNA; 2009 Jun 02; 15(6):1198-207. PubMed ID: 19372536
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  • 13. A limited number of pseudouridine residues in the human atac spliceosomal UsnRNAs as compared to human major spliceosomal UsnRNAs.
    Massenet S, Branlant C.
    RNA; 1999 Nov 02; 5(11):1495-503. PubMed ID: 10580478
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  • 16. Base pairing with U6atac snRNA is required for 5' splice site activation of U12-dependent introns in vivo.
    Incorvaia R, Padgett RA.
    RNA; 1998 Jun 02; 4(6):709-18. PubMed ID: 9622129
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  • 17. Highly diverged U4 and U6 small nuclear RNAs required for splicing rare AT-AC introns.
    Tarn WY, Steitz JA.
    Science; 1996 Sep 27; 273(5283):1824-32. PubMed ID: 8791582
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