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PDBsum entry 2ht1

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Top Page protein dna_rna ligands Protein-protein interface(s) links
Hydrolase/RNA PDB id
2ht1
Contents
Protein chains
324 a.a.
DNA/RNA
Ligands
__U-__C ×2
SO4 ×2

References listed in PDB file
Key reference
Title Structural insights into RNA-Dependent ring closure and atpase activation by the rho termination factor.
Authors E.Skordalakes, J.M.Berger.
Ref. Cell, 2006, 127, 553-564. [DOI no: 10.1016/j.cell.2006.08.051]
PubMed id 17081977
Abstract
Hexameric helicases and translocases are required for numerous essential nucleic-acid transactions. To better understand the mechanisms by which these enzymes recognize target substrates and use nucleotide hydrolysis to power molecular movement, we have determined the structure of the Rho transcription termination factor, a hexameric RNA/DNA helicase, with single-stranded RNA bound to the motor domains of the protein. The structure reveals a closed-ring "trimer of dimers" conformation for the hexamer that contains an unanticipated arrangement of conserved loops required for nucleic-acid translocation. RNA extends across a shallow intersubunit channel formed by conserved amino acids required for RNA-stimulated ATP hydrolysis and translocation and directly contacts a conserved lysine, just upstream of the catalytic GKT triad, in the phosphate-binding (P loop) motif of the ATP-binding pocket. The structure explains the molecular effects of numerous mutations and provides new insights into the links between substrate recognition, ATP turnover, and coordinated strand movement.
Figure 1.
Figure 1. Rho Protomer Structure
Figure 3.
Figure 3. Primary and Secondary RNA-Binding Sites of Rho
The above figures are reprinted by permission from Cell Press: Cell (2006, 127, 553-564) copyright 2006.
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