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Article title matches

  1. Category:Loop with conformation similar to stable uncg-tetraloops and u:g closing base pair (113 bytes)
    1: ...ord Loop with conformation similar to stable uncg-tetraloops and u:g closing base pair

Page text matches

  1. User:Ignacio Ibarra Del Río/Workbench/Structural analysis of DNA structures (4,313 bytes)
    20: * No internal loops, tetraloops, hairpin loops, or bulged bases are allowed.
  2. Sandbox UC 25 (4,096 bytes)
    17: * No internal loops, tetraloops, hairpin loops, or bulged bases are allowed.
  3. 1t4l (4,843 bytes)
    23: ...ubstrates, by recognizing hairpins closed by AGNN tetraloops. We report the solution structure of Rnt1p dsRBD ...
  4. 1t4n (4,595 bytes)
    23: ...nal loops and bulges and capped by conserved AGNN tetraloops. Consistent with this substrate specificity, the ...
  5. 1t4o (4,683 bytes)
    23: ...nal loops and bulges and capped by conserved AGNN tetraloops. Consistent with this substrate specificity, the ...
  6. 1idv (3,347 bytes)
    11: ...buckled, the first and fourth nucleotides of both tetraloops form a Watson-Crick type base-pair, while the api...
  7. 1r4h (3,405 bytes)
    11: ...buckled, the first and fourth nucleotides of both tetraloops form a Watson-Crick type base-pair, while the api...
  8. 1rfr (2,929 bytes)
    11: ...pting a structure highly similar to stable cUNCGg tetraloops. Binding of CVB3 3Cpro induces changes in NMR spe...
  9. 1f5u (2,725 bytes)
    11: ...stem-loops (H2, H3) contain highly conserved GACG tetraloops that are not self-complementary sequences. Using ...
  10. 1s2f (3,293 bytes)
    11: ... tetraloop differs from the well-known classes of tetraloops (GNRA, CUYG, UNCG) in terms of its stability, str...
  11. 1s34 (3,240 bytes)
    11: ... tetraloop differs from the well-known classes of tetraloops (GNRA, CUYG, UNCG) in terms of its stability, str...
  12. 1jox (2,592 bytes)
    11: ...te sides of the loop, distinguishing it from GNRA tetraloops. The unusual conformation of the juxtaposed uraci...
  13. 1jp0 (2,595 bytes)
    11: ...te sides of the loop, distinguishing it from GNRA tetraloops. The unusual conformation of the juxtaposed uraci...
  14. 2luq (4,229 bytes)
    13: ... core that govern binding of helix alpha1 to AGAA tetraloops. The dynamic behavior of the dsRBD bound to a lon...
  15. 1k4a (2,837 bytes)
    11: ...oops, AGAA and AGUU, using NMR spectroscopy. Both tetraloops have the same overall structure, in which the bac...
  16. 1k4b (2,837 bytes)
    11: ...oops, AGAA and AGUU, using NMR spectroscopy. Both tetraloops have the same overall structure, in which the bac...
  17. 1k6g (2,525 bytes)
    2: ==Solution Structure of Conserved AGNN Tetraloops: Insights into Rnt1p RNA Processing==
    11: ... than 13 bp. The solution structures of these two tetraloops reveal a common fold for the terminal loop stabil...
    13: Solution structure of conserved AGNN tetraloops: insights into Rnt1p RNA processing.,Lebars I, La...
  18. 1k6h (2,525 bytes)
    2: ==Solution Structure of Conserved AGNN Tetraloops: Insights into Rnt1p RNA processing==
    11: ... than 13 bp. The solution structures of these two tetraloops reveal a common fold for the terminal loop stabil...
    13: Solution structure of conserved AGNN tetraloops: insights into Rnt1p RNA processing.,Lebars I, La...
  19. 1l1w (2,656 bytes)
    11: ... to that of GNRA tetraloop, suggesting that these tetraloops are included in an extensive new motif GNRR. Comp...
  20. 1tlr (2,745 bytes)
    11: ...NAs by providing a specific binding site for GAAA tetraloops. Here we report the solution structure of the iso...

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