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Article title matches

  1. Category:Dead-box protein 19b (51 bytes)
    1: List of pages with the keyword Dead-box protein 19b
  2. Category:Dead-box protein (47 bytes)
    1: List of pages with the keyword Dead-box protein
  3. Category:Dead-end elimination theorem (59 bytes)
    1: List of pages with the keyword Dead-end elimination theorem
  4. Category:Dead end elimination (51 bytes)
    1: List of pages with the keyword Dead end elimination
  5. Category:Dead protein (43 bytes)
    1: List of pages with the keyword Dead protein
  6. Category:Dead box protein family (54 bytes)
    1: List of pages with the keyword Dead box protein family
  7. Category:Dead box (39 bytes)
    1: List of pages with the keyword Dead box
  8. Category:Dead-box (39 bytes)
    1: List of pages with the keyword Dead-box
  9. Category:Dead end complex (47 bytes)
    1: List of pages with the keyword Dead end complex
  10. Category:Dead-box atpase (46 bytes)
    1: List of pages with the keyword Dead-box atpase
  11. Category:Dead (35 bytes)
    1: List of pages with the keyword Dead
  12. Category:Dead-box helicase (48 bytes)
    1: List of pages with the keyword Dead-box helicase
  13. Category:Dead box polypeptide 59 isoform 2 (64 bytes)
    1: List of pages with the keyword Dead box polypeptide 59 isoform 2
  14. Category:Dead motor domain (48 bytes)
    1: List of pages with the keyword Dead motor domain
  15. Category:Dead box rna helicase (52 bytes)
    1: List of pages with the keyword Dead box rna helicase
  16. Category:Dead ringer (42 bytes)
    1: List of pages with the keyword Dead ringer
  17. Category:Dead-box rna helicase ddx3 (57 bytes)
    1: List of pages with the keyword Dead-box rna helicase ddx3
  18. Structural basis for RNA unwinding by the DEAD-box protein Drosophila Vasa (3,422 bytes)
    2: Vasa is a DEAD-box RNA [[Helicase|helicase]] and the determinati...
    38: [[Category: Dead]]
  19. Dead box RNA helicase (22 bytes)
  20. Dead box protein (22 bytes)

Page text matches

  1. 2v24 (4,782 bytes)
    24: ...the Drosophila orthologue GUSTAVUS binding to the DEAD-box RNA helicase VASA (DINNNN). To further invest...
  2. 4gew (2,154 bytes)
    11: ... a free 5' phosphate. Catalyzes the hydrolysis of dead-end complexes between DNA and the topoisomerase 2...
  3. 7e8p (4,294 bytes)
    14: ...ing that quadruple pi-stacking is a main cause of dead-end complex formation. Moreover, the activities o...
  4. 7e8q (4,273 bytes)
    14: ...ing that quadruple pi-stacking is a main cause of dead-end complex formation. Moreover, the activities o...
  5. 1h5n (6,321 bytes)
    24: ...al oxygen ligands and Mo is Mo(VI). Thus, it is a dead-end species, neither oxo group acceptance nor e(-...
  6. 2j0q (5,659 bytes)
    24: ...he EJC reveals how it stably locks onto mRNA. The DEAD-box protein eIF4AIII encloses an ATP molecule and...
  7. 2j0f (5,436 bytes)
    26: ...y, resulted in bound thymine with HTP in a closed dead-end complex. Thus thymine appears to be able to r...
  8. 2j0s (5,565 bytes)
    24: ...he EJC reveals how it stably locks onto mRNA. The DEAD-box protein eIF4AIII encloses an ATP molecule and...
  9. 1uvi (3,301 bytes)
    14: ...le round of reaction within the crystal to form a dead-end complex that partially collapses within the e...
  10. 1uvl (3,314 bytes)
    14: ...le round of reaction within the crystal to form a dead-end complex that partially collapses within the e...
  11. 1uvj (3,361 bytes)
    14: ...le round of reaction within the crystal to form a dead-end complex that partially collapses within the e...
  12. 1uvn (3,426 bytes)
    14: ...le round of reaction within the crystal to form a dead-end complex that partially collapses within the e...
  13. 1uvm (3,313 bytes)
    14: ...le round of reaction within the crystal to form a dead-end complex that partially collapses within the e...
  14. 1uvk (3,372 bytes)
    2: ...ibition of an RNA-dependent RNA polymerase phi6p2 dead-end complex==
    14: ...le round of reaction within the crystal to form a dead-end complex that partially collapses within the e...
  15. 1ur2 (5,466 bytes)
    24: ...es are tailored both to prevent the formation of "dead-end" reaction products and to facilitate synergy ...
  16. 1ur1 (5,389 bytes)
    24: ...es are tailored both to prevent the formation of "dead-end" reaction products and to facilitate synergy ...
  17. 1uqy (5,239 bytes)
    24: ...es are tailored both to prevent the formation of "dead-end" reaction products and to facilitate synergy ...
  18. 1uqz (5,381 bytes)
    24: ...es are tailored both to prevent the formation of "dead-end" reaction products and to facilitate synergy ...
  19. 1qni (4,028 bytes)
    24: ...t electron transfer and avoiding the formation of dead-end products.
  20. 2m3d (2,944 bytes)
    2: ==NMR structure of the GUCT domain from human DEAD box polypeptide 21==

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