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== RNA-Dependent RNA Polymerase Function ==
== RNA-Dependent RNA Polymerase Function ==
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RNA-dependent RNA polymerases(RdRps)are one of the most versatile enzymes of RNA viruses that are vital for genome replication as well as for carrying out transcription. They have such a name due to their function where they use RNA template to synthesize mRNA which will later be translated into proteins and spread virus among the host. The core structural features of these polymerases are conserved, however, there is some divergence among their sequences. The structure of the RNA-dependent RNA polymerases resembles a cupped right hand which also consists of fingers, palm and thumb subdomains. In most cases catalysis involves several conserved aspartate residues together with <scene name='89/891374/Divalent_metal_ions/5'>divalent metal ions.</scene>
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RNA-dependent RNA polymerases(RdRps)are one of the most versatile enzymes of RNA viruses that are vital for genome replication as well as for carrying out transcription. They have such a name due to their function where they use RNA template to synthesize mRNA which will later be translated into proteins and spread virus among the host. The core structural features of these polymerases are conserved, however, there is some divergence among their sequences<ref>PMID:29439438</ref>. The structure of the RNA-dependent RNA polymerases resembles a cupped right hand which also consists of fingers, palm and thumb subdomains. In most cases catalysis involves several conserved aspartate residues together with <scene name='89/891374/Divalent_metal_ions/5'>divalent metal ions.</scene>
These RdRps are such a great target for antiviral drugs because they are in charge of viral genome replication as well as viral genome transcription, meaning these proteins allow viruses to grow in number and spread to other cells or parts of the body. Therefore, if there are drugs that target these enzymes, viruses would not be able to survive inside a host. Since it has a positive-sense, single stranded RNA genome, this can be translated right away by the ribosome and synthesize the many structural and non structural proteins that will form the Replication and Transcription Complex (RTC), and most importantly it will synthesize the RdRp that is encoded in the genome <ref>PMID:12142481</ref>.
These RdRps are such a great target for antiviral drugs because they are in charge of viral genome replication as well as viral genome transcription, meaning these proteins allow viruses to grow in number and spread to other cells or parts of the body. Therefore, if there are drugs that target these enzymes, viruses would not be able to survive inside a host. Since it has a positive-sense, single stranded RNA genome, this can be translated right away by the ribosome and synthesize the many structural and non structural proteins that will form the Replication and Transcription Complex (RTC), and most importantly it will synthesize the RdRp that is encoded in the genome <ref>PMID:12142481</ref>.
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Once the template strand is bound and NTP entry tunnel is formed, we can find several conserved basic residues (Arg 163, Lys 167, Arg 174) that were previously described binding the RdRp to the template strand.
Once the template strand is bound and NTP entry tunnel is formed, we can find several conserved basic residues (Arg 163, Lys 167, Arg 174) that were previously described binding the RdRp to the template strand.
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There is a kink at the top of the NTP entry tunnel which is stabilized by hydrogen bonding interactions involving Pro40, Glu47, and Arg49. these residues are highly conserved across picornaviruses , suggesting that the kink is common to all these viral polymerases.
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There is a kink at the top of the NTP entry tunnel which is stabilized by hydrogen bonding interactions involving Pro40, Glu47, and Arg49. these residues are highly conserved across picornaviruses , suggesting that the kink is common to all these viral polymerases<ref name="art1"/>.
One side of the binding pocket for the N-terminus is almost entirely made up of glycines (Gly284, Gly285) which provide some torsional flexibility. These glycines are 100% conserved among picornaviral polymerase sequences.
One side of the binding pocket for the N-terminus is almost entirely made up of glycines (Gly284, Gly285) which provide some torsional flexibility. These glycines are 100% conserved among picornaviral polymerase sequences.

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Poliovirus RNA-Dependent RNA Polymerase

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