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== Structural Features ==
== Structural Features ==
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The Poliovirus RNA-Dependent RNA polymerase is a 53kDa polymerase which together with other host proteins carries out viral RNA replication on the host cell cytoplasm. The poliovirus RdRp’s shape is common to that of other polymerases, with a palm subdomain which contains a core structure very similar to other polymerases, and different structures of the fingers and thumb from those of other polymerases. The palm subdomain contains four amino acid sequence <scene name='89/891374/Motifs/5'>motifs</scene> of RNA-dependent RNA polymerases, referred to as A, B, C, and D. These fold into a structure that forms the core of the palm subdomain. This core structure consists of two α helices that pack beneath a four-stranded antiparallel β sheet. This same core structure is present in the palm subdomains of all four categories of polymerases. There is a fifth motif, motif E, unique to RNA-dependent polymerases, that pack between the palm and thumb subdomains<ref>Jeffrey L Hansen, Alexander M Long, Steve C Schultz, Structure of the RNA-dependent RNA polymerase of poliovirus, Volume 5, Issue 8, 1997, Pages 1109-1122, ISSN 0969-2126, https://doi.org/10.1016/S0969-2126(97)00261-X (https://www.sciencedirect.com/science/article/pii/S096921269700261X)</ref>.
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The Poliovirus RNA-Dependent RNA polymerase is a 53kDa polymerase which together with other host proteins carries out viral RNA replication on the host cell cytoplasm. The poliovirus RdRp’s shape is common to that of other polymerases, with a palm subdomain which contains a core structure very similar to other polymerases, and different structures of the fingers and thumb from those of other polymerases. The palm subdomain contains four amino acid sequence <scene name='89/891374/Motifs/5'>motifs</scene> of RNA-dependent RNA polymerases, referred to as A, B, C, and D. These fold into a structure that forms the core of the palm subdomain. This core structure consists of two α helices that pack beneath a four-stranded antiparallel β sheet. This same core structure is present in the palm subdomains of all four categories of polymerases. There is a fifth motif, motif E, unique to RNA-dependent polymerases, that pack between the palm and thumb subdomains<ref name="art2">Jeffrey L Hansen, Alexander M Long, Steve C Schultz, Structure of the RNA-dependent RNA polymerase of poliovirus, Volume 5, Issue 8, 1997, Pages 1109-1122, ISSN 0969-2126, https://doi.org/10.1016/S0969-2126(97)00261-X (https://www.sciencedirect.com/science/article/pii/S096921269700261X)</ref>.
Motif A of the poliovirus polymerase forms one of the four β strands (β1) of the core structure followed by a short helical turn (αE) at the C-terminal end of the motif. Near the end of the β strand of motif A just preceding the helix is the completely conserved aspartate that has been aligned in all previous sequence and structure comparisons; this residue is expected to coordinate catalytically essential metal ions. There is a highly conserved Asp238 residue in poliovirus polymerase, an aspartate at this position in RNA-dependent RNA polymerases, could favor NTPs over dNTPs, perhaps by interacting directly with the 2′hydroxyl group of an incoming NTP<ref name="art1">PMID:15306852</ref>.
Motif A of the poliovirus polymerase forms one of the four β strands (β1) of the core structure followed by a short helical turn (αE) at the C-terminal end of the motif. Near the end of the β strand of motif A just preceding the helix is the completely conserved aspartate that has been aligned in all previous sequence and structure comparisons; this residue is expected to coordinate catalytically essential metal ions. There is a highly conserved Asp238 residue in poliovirus polymerase, an aspartate at this position in RNA-dependent RNA polymerases, could favor NTPs over dNTPs, perhaps by interacting directly with the 2′hydroxyl group of an incoming NTP<ref name="art1">PMID:15306852</ref>.
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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.
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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<ref name="art1" />.
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.
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.
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Motif D of poliovirus polymerase forms an α helix-turn-β strand structure. The α helix packs beneath the β sheet of the core structure.The β strand of motif D makes limited antiparallel β sheet interactions with the outside of motif A to complete the four-stranded antiparallel β sheet of the core structure. The turn region packs against the base of the fingers subdomain.
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Motif D of poliovirus polymerase forms an α helix-turn-β strand structure. The α helix packs beneath the β sheet of the core structure.The β strand of motif D makes limited antiparallel β sheet interactions with the outside of motif A to complete the four-stranded antiparallel β sheet of the core structure. The turn region packs against the base of the fingers subdomain<ref name="art2" />.
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Motif E is positioned between the palm and thumb subdomains and is not integral to the conserved core structure. Motif E forms a short β-turn-β structure that interacts extensively with the face of the β sheet of the core structure. These interactions are distinctly hydrophobic and account for the conservation of several hydrophobic residues in motifs A, C, and D of RNA-dependent polymerases.
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Motif E is positioned between the palm and thumb subdomains and is not integral to the conserved core structure. Motif E forms a short β-turn-β structure that interacts extensively with the face of the β sheet of the core structure. These interactions are distinctly hydrophobic and account for the conservation of several hydrophobic residues in motifs A, C, and D of RNA-dependent polymerases<ref name="art2" />.
The <scene name='89/891374/Motifs/6'>fingers subdomain</scene> of the poliovirus RdRp is composed of two polypeptide segments, a larger segment that precedes motif A and a smaller segment composed of residues between motifs A and B of the palm subdomain. This fingers subdomain is composed of two polypeptide segments, an N-terminal of the palm subdomain and the second between motifs A and B. The thumb subdomain is composed primarily ofthe C-terminal-most 80 amino acid residues. The thumb subdomain of this polymerase begins with a beta strand that interacts with the edge of the beta strands of motif E to from a short three-stranded antiparallel beta sheet. The remainder of the thumb is composed of a series of five alpha helices. The first three from a three-helix bundle, the fourth is positioned at the top of the thumb subdomain and the fifth is positioned along the front edge of the beta strand of the thumb subdomain.
The <scene name='89/891374/Motifs/6'>fingers subdomain</scene> of the poliovirus RdRp is composed of two polypeptide segments, a larger segment that precedes motif A and a smaller segment composed of residues between motifs A and B of the palm subdomain. This fingers subdomain is composed of two polypeptide segments, an N-terminal of the palm subdomain and the second between motifs A and B. The thumb subdomain is composed primarily ofthe C-terminal-most 80 amino acid residues. The thumb subdomain of this polymerase begins with a beta strand that interacts with the edge of the beta strands of motif E to from a short three-stranded antiparallel beta sheet. The remainder of the thumb is composed of a series of five alpha helices. The first three from a three-helix bundle, the fourth is positioned at the top of the thumb subdomain and the fifth is positioned along the front edge of the beta strand of the thumb subdomain.
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The <scene name='89/891374/Motifs/7'>thumb subdomain</scene> is composed of mostly residues C-terminal of the palm subdomain and is largely alpha helical. The core structure comprises motifs A-D, and it consists of two alpha helices that pack beneath a four-stranded antiparallel beta sheet. The strands of the antiparallel beta sheet are composed of residues from motifs A, C, and part of D, while the alpha helices are composed of residues from motif B and the remainder of motif D. Motif E packs between the pal and thumb subdomains. Near the end of the beta strand of motif A just before the helix is a completely conserved aspartate residue that is expected to coordinate catalytically essential metal ions.
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The <scene name='89/891374/Motifs/7'>thumb subdomain</scene> is composed of mostly residues C-terminal of the palm subdomain and is largely alpha helical. The core structure comprises motifs A-D, and it consists of two alpha helices that pack beneath a four-stranded antiparallel beta sheet. The strands of the antiparallel beta sheet are composed of residues from motifs A, C, and part of D, while the alpha helices are composed of residues from motif B and the remainder of motif D. Motif E packs between the pal and thumb subdomains. Near the end of the beta strand of motif A just before the helix is a completely conserved aspartate residue that is expected to coordinate catalytically essential metal ions<ref name="art2" />.

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Poliovirus RNA-Dependent RNA Polymerase

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