Sandbox Reserved 1684

From Proteopedia

(Difference between revisions)
Jump to: navigation, search
Line 18: Line 18:
== Structural Features ==
== Structural Features ==
-
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.
+
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>.
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.
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.

Revision as of 23:05, 8 November 2021

Poliovirus RNA-Dependent RNA Polymerase

Drag the structure with the mouse to rotate
Personal tools