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Motif B of poliovirus polymerase forms one of two α helices that pack beneath the four-stranded antiparallel β sheet of the polymerase core structure. However, the C-terminal portion of motif B, forms part of a long α helix. A portion of this helix is similarly positioned in all four categories of polymerases: it is in this region that all four motifs come together to form the ‘heart’ of the core structure of the polymerase palm subdomains. In motif B, residue Asn297 hydrogen bonds with the conserved Asp238 of motif A, helping to discriminate between NTPs and dNTPs.
Motif B of poliovirus polymerase forms one of two α helices that pack beneath the four-stranded antiparallel β sheet of the polymerase core structure. However, the C-terminal portion of motif B, forms part of a long α helix. A portion of this helix is similarly positioned in all four categories of polymerases: it is in this region that all four motifs come together to form the ‘heart’ of the core structure of the polymerase palm subdomains. In motif B, residue Asn297 hydrogen bonds with the conserved Asp238 of motif A, helping to discriminate between NTPs and dNTPs.
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Motif C of poliovirus polymerase forms a β-turn-β structure, which is part of the antiparallel β sheet of the polymerase core. The turn region of motif C contains two aspartates (Asp328 and Asp329) that are highly conserved in RNA-dependent polymerases. The two adjacent aspartates of motif C are quite close to the conserved aspartate of motif A, and these clustered aspartates are proposed to coordinate catalytically essential metals. Indeed, for poliovirus polymerase, mutating the conserved aspartate of motif A (Asp233) or the first conserved aspartate of motif C (Asp328), results in an inactive polymerase. Changing the second aspartate of motif C (Asp329) to asparagine results in a change in metal specificity. In the crystal structure of poliovirus polymerase, strong electron density is observed between the aspartate of motif A and the second aspartate of motif C.

Revision as of 16:25, 17 October 2021

Poliovirus RNA-Dependent RNA Polymerase

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