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PDBsum entry 5k8h

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RNA PDB id
5k8h

 

 

 

 

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Contents
Ligands
_DA-_DA
NH4
Waters ×8
PDB id:
5k8h
Name: RNA
Title: The x-ray crystal structure of a parallel poly(ra) double helix generated by ra7 at acidic ph
Structure: RNA 7-mer. Chain: a. Engineered: yes
Source: Synthetic: yes. Synthetic construct. Organism_taxid: 32630
Resolution:
1.07Å     R-factor:   0.106     R-free:   0.108
Authors: M.L.Gleghorn,L.E.Maquat
Key ref: M.L.Gleghorn et al. (2016). Crystal structure of a poly(rA) staggered zipper at acidic pH: evidence that adenine N1 protonation mediates parallel double helix formation. Nucleic Acids Res, 44, 8417-8424. PubMed id: 27288442 DOI: 10.1093/nar/gkw526
Date:
30-May-16     Release date:   06-Jul-16    
 Headers
 References

 

 
DOI no: 10.1093/nar/gkw526 Nucleic Acids Res 44:8417-8424 (2016)
PubMed id: 27288442  
 
 
Crystal structure of a poly(rA) staggered zipper at acidic pH: evidence that adenine N1 protonation mediates parallel double helix formation.
M.L.Gleghorn, J.Zhao, D.H.Turner, L.E.Maquat.
 
  ABSTRACT  
 
We have solved at 1. 07: Å resolution the X-ray crystal structure of a polyriboadenylic acid (poly(rA)) parallel and continuous double helix. Fifty-nine years ago, double helices of poly(rA) were first proposed to form at acidic pH. Here, we show that 7-mer oligo(rA), i.e. rA7, hybridizes and overlaps in all registers at pH 3.5 to form stacked double helices that span the crystal. Under these conditions, rA7 forms well-ordered crystals, whereas rA6 forms fragile crystalline-like structures, and rA5, rA8 and rA11 fail to crystallize. Our findings support studies from ∼50 years ago: one showed using spectroscopic methods that duplex formation at pH 4.5 largely starts with rA7 and begins to plateau with rA8; another proposed a so-called 'staggered zipper' model in which oligo(rA) strands overlap in multiple registers to extend the helical duplex. While never shown, protonation of adenines at position N1 has been hypothesized to be critical for helix formation. Bond angles in our structure suggest that N1 is protonated on the adenines of every other rAMP-rAMP helix base pair. Our data offer new insights into poly(rA) duplex formation that may be useful in developing a pH sensor.
 

 

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