Helicase
From Proteopedia
| Line 175: | Line 175: | ||
**[[2p6n]] – hDDX41 helicase domain (mutant) <BR /> | **[[2p6n]] – hDDX41 helicase domain (mutant) <BR /> | ||
**[[2e29]], [[2m3d]] - hDDX50 GUCT domain - NMR<BR /> | **[[2e29]], [[2m3d]] - hDDX50 GUCT domain - NMR<BR /> | ||
| - | **[[2rqa]] – hDHX58 C terminal – NMR<BR /> | ||
| - | **[[3eqt]] - hDHX58 C terminal + RNA<BR /> | ||
| - | **[[2eqs]] – hDHX8 S1 domain<BR /> | ||
| - | **[[3i4u]]– hDHX8 residues 950-1183<br /> | ||
**[[1vec]] – hP54 N terminal<BR /> | **[[1vec]] – hP54 N terminal<BR /> | ||
**[[2hjv]] – BsDBPA domain 2 – ''Bacillus subtilis''<BR /> | **[[2hjv]] – BsDBPA domain 2 – ''Bacillus subtilis''<BR /> | ||
| Line 200: | Line 196: | ||
**[[3i62]] - yMSS116 + ADP + AlF4 + RNA<BR /> | **[[3i62]] - yMSS116 + ADP + AlF4 + RNA<BR /> | ||
**[[4tyn]] - yMSS116 + ADP + DNA<br /> | **[[4tyn]] - yMSS116 + ADP + DNA<br /> | ||
| - | **[[2xau]], [[3kx2]], [[5jpt]] – | + | **[[2xau]], [[3kx2]], [[5jpt]] – yPrp43 + nucleotide<BR /> |
| - | **[[5i8q]] - | + | **[[5i8q]] - yPrp43 + ADPNP + RNA<br /> |
| - | **[[5ltk]], [[5ltj | + | **[[5ltk]], [[5ltj]], [[5d0u]] - CtPrp43 + ADP – ''Chaetomium thermophilum''<br /> |
| - | **[[5lta]] - | + | **[[5lta]] - CtPrp43 + ADP + RNA<br /> |
**[[3jrv]] – DDX3X + protein K7 – Vaccinia virus<BR /> | **[[3jrv]] – DDX3X + protein K7 – Vaccinia virus<BR /> | ||
**[[3fmo]], [[3fhc]] – hDBP5 + Nup214<BR /> | **[[3fmo]], [[3fhc]] – hDBP5 + Nup214<BR /> | ||
| Line 212: | Line 208: | ||
**[[5e7m]], [[5e7j]] – hDDX3X catalytic domain + nucleotide<br /> | **[[5e7m]], [[5e7j]] – hDDX3X catalytic domain + nucleotide<br /> | ||
**[[3dkp]] – hDDX52 domain I + ADP<BR /> | **[[3dkp]] – hDDX52 domain I + ADP<BR /> | ||
| - | **[[5e3h]] - hDHX58 residues 232-925 + RNA<br /> | ||
**[[2wax]], [[2way]] – hDDX6 C terminal + EDC3-FDF peptide<BR /> | **[[2wax]], [[2way]] – hDDX6 C terminal + EDC3-FDF peptide<BR /> | ||
**[[2j0s]], [[2j0q]], [[2hyi]] – hDDX48 + protein mago nashi homolog + RNA-binding protein 8A + protein CASC3 + RNA<BR /> | **[[2j0s]], [[2j0q]], [[2hyi]] – hDDX48 + protein mago nashi homolog + RNA-binding protein 8A + protein CASC3 + RNA<BR /> | ||
| Line 219: | Line 214: | ||
**[[3nbf]] - TtHera N terminal (mutant) + 8-oxo-ADP<br /> | **[[3nbf]] - TtHera N terminal (mutant) + 8-oxo-ADP<br /> | ||
**[[3moj]] - BsDBPA RNA-binding domain + RNA | **[[3moj]] - BsDBPA RNA-binding domain + RNA | ||
| + | |||
| + | * DEAH box RNA helicase | ||
| + | |||
| + | **[[2eqs]] – hDHX8 S1 domain<br /> | ||
| + | **[[3i4u]] – hDHX8 residues 950-1183<br /> | ||
| + | **[[3llm]] – hDHX9<br /> | ||
| + | **[[2rs6]], [[2rs7]] – DHX9 RNA-binding domain – mouse – NMR<br /> | ||
| + | **[[5xdr]] – hDHX15 residues 110-795 (mutant)<br /> | ||
| + | **[[2n16]] – hDHX36 G-quadruplex domain - NMR<br /> | ||
| + | **[[2rqa]] – hDHX58 C terminal – NMR<br /> | ||
| + | **[[3vyx]], [[3vyy]] – hDHX9 RNA-binding domain + RNA<br /> | ||
| + | **[[2n21]] – hDHX36 G-quadruplex domain + DNA - NMR<br /> | ||
| + | **[[5e3h]] - hDHX58 residues 232-925 + RNA<br /> | ||
| + | **[[3eqt]]- hDHX58 residues 541-678 + RNA<br /> | ||
*ATP-dependent RNA helicase | *ATP-dependent RNA helicase | ||
| Line 388: | Line 397: | ||
**[[5lus]] – BLM DHBN domain - pelican<br /> | **[[5lus]] – BLM DHBN domain - pelican<br /> | ||
**[[5lup]] – hBLM DHBN domain <br /> | **[[5lup]] – hBLM DHBN domain <br /> | ||
| + | |||
| + | *Helicase CA8 or Prp28 | ||
| + | |||
| + | **[[4w7s]] – yCa8<br /> | ||
*Helicase NSP2 | *Helicase NSP2 | ||
| Line 425: | Line 438: | ||
**[[3hib]], [[3im1]], [[3im2]] – yBrr2 2nd SEC63 domain<br /> | **[[3hib]], [[3im1]], [[3im2]] – yBrr2 2nd SEC63 domain<br /> | ||
**[[4bgd]], [[5m5p]], [[5m52]], [[5dca]] – yBrr2 + pre-mRNA-splicing factor 8<br /> | **[[4bgd]], [[5m5p]], [[5m52]], [[5dca]] – yBrr2 + pre-mRNA-splicing factor 8<br /> | ||
| - | **[[4w7s]] – yCa8<br /> | ||
*crispr-associated helicase Cas3 | *crispr-associated helicase Cas3 | ||
Revision as of 10:37, 13 December 2017
| |||||||||||
3D structures of helicase
Updated on 13-December-2017
References
Crystal structure of a DExx box DNA helicase., Subramanya HS, Bird LE, Brannigan JA, Wigley DB, Nature. 1996 Nov 28;384(6607):379-83. PMID:8934527
^ Johnson DS, Bai L, Smith BY, Patel SS, Wang MD (2007). "Single-molecule studies reveal dynamics of DNA unwinding by the ring-shaped t7 helicase". Cell 129 (7): 1299–309. doi:10.1016/j.cell.2007.04.038. PMID 17604719.
^ a b "Researchers solve mystery of how DNA strands separate" (2007-07-03). Retrieved on 2007-07-05.
^ Dumont S, Cheng W, Serebrov V, Beran RK, Tinoco Jr I, Pylr AM, Bustamante C, "RNA Translocation and Unwinding Mechanism of HCV NS3 Helicase and its Coordination by ATP", Nature. 2006 Jan 5; 439: 105-108.
Anand SP, Zheng H, Bianco PR, Leuba SH, Khan SA. DNA helicase activity of PcrA is not required for displacement of RecA protein from DNA or inhibition of RecA-mediated DNA strand exchange. Journal of Bacteriology (2007) 189 (12):4502-4509.
Bird L, Subramanya HS, Wigley DB, "Helicases: a unifying structural theme?", Current Opinion in Structural Biology. 1998 Feb; 8 (1): 14-18.
Betterton MD, Julicher F, "Opening of nucleic-acid double strands by helicases: active versus passive opening.", Physical Review E. 2005 Jan; 71 (1): 011904.
- Sengoku T, Nureki O, Nakamura A, Kobayashi S, Yokoyama S. Structural basis for RNA unwinding by the DEAD-box protein Drosophila Vasa. Cell. 2006 Apr 21;125(2):287-300. PMID:16630817 doi:10.1016/j.cell.2006.01.054
- Sengoku T, Nureki O, Dohmae N, Nakamura A, Yokoyama S. Crystallization and preliminary X-ray analysis of the helicase domains of Vasa complexed with RNA and an ATP analogue. Acta Crystallogr D Biol Crystallogr. 2004 Feb;60(Pt 2):320-2. Epub 2004, Jan 23. PMID:14747711 doi:10.1107/S0907444903025897
Content Donators
Created with the participation of Luis E Ramirez-Tapia, Wayne Decatur.
Proteopedia Page Contributors and Editors (what is this?)
Michal Harel, Alexander Berchansky, Wayne Decatur, Joel L. Sussman


