Structural requirement for Mg2+ binding in the group I intron core

P Rangan, SA Woodson - Journal of molecular biology, 2003 - Elsevier
Divalent metal ions are required for splicing of group I introns, but their role in maintaining
the structure of the active site is still under investigation. Ribonuclease and hydroxyl radical …

[引用][C] Structural Requirement for Mg2+ Binding in the Group I Intron Core

P Rangan, SA Woodson - Journal of Molecular Biology, 2003 - cir.nii.ac.jp

Structural requirement for Mg2+ binding in the group I intron core

P Rangan, SA Woodson - Journal of molecular biology, 2003 - pubmed.ncbi.nlm.nih.gov
Divalent metal ions are required for splicing of group I introns, but their role in maintaining
the structure of the active site is still under investigation. Ribonuclease and hydroxyl radical …

Structural requirement for Mg2+ binding in the group I intron core

P Rangan, SA Woodson - Journal of molecular biology, 2003 - pure.johnshopkins.edu
Divalent metal ions are required for splicing of group I introns, but their role in maintaining
the structure of the active site is still under investigation. Ribonuclease and hydroxyl radical …

Structural Requirement for Mg 2+ Binding in the Group I Intron Core

P Rangan, SA Woodson - Journal of Molecular Biology, 2003 - infona.pl
Divalent metal ions are required for splicing of group I introns, but their role in maintaining
the structure of the active site is still under investigation. Ribonuclease and hydroxyl radical …

Structural requirement for Mg2+ binding in the group I intron core.

P Rangan, SA Woodson - Journal of Molecular Biology, 2003 - europepmc.org
Divalent metal ions are required for splicing of group I introns, but their role in maintaining
the structure of the active site is still under investigation. Ribonuclease and hydroxyl radical …

[引用][C] Structural requirement for Mg2+ binding in the group I intron core

P RANGAN, SA WOODSON - Journal of molecular biology, 2003 - Elsevier