Faculty Opinions recommendation of Decoding on the ribosome depends on the structure of the mRNA phosphodiester backbone.

Author(s):  
Traci Hall
2019 ◽  
Vol 47 (14) ◽  
pp. 7223-7234 ◽  
Author(s):  
Elisabeth Fuchs ◽  
Christoph Falschlunger ◽  
Ronald Micura ◽  
Kathrin Breuker

Abstract The catalytic strategies of small self-cleaving ribozymes often involve interactions between nucleobases and the ribonucleic acid (RNA) backbone. Here we show that multiply protonated, gaseous RNA has an intrinsic preference for the formation of ionic hydrogen bonds between adenine protonated at N3 and the phosphodiester backbone moiety on its 5′-side that facilitates preferential phosphodiester backbone bond cleavage upon vibrational excitation by low-energy collisionally activated dissociation. Removal of the basic N3 site by deaza-modification of adenine was found to abrogate preferential phosphodiester backbone bond cleavage. No such effects were observed for N1 or N7 of adenine. Importantly, we found that the pH of the solution used for generation of the multiply protonated, gaseous RNA ions by electrospray ionization affects phosphodiester backbone bond cleavage next to adenine, which implies that the protonation patterns in solution are at least in part preserved during and after transfer into the gas phase. Our study suggests that interactions between protonated adenine and phosphodiester moieties of RNA may play a more important mechanistic role in biological processes than considered until now.


2009 ◽  
Vol 45 (1-2) ◽  
pp. 143-155 ◽  
Author(s):  
Jörg Rinnenthal ◽  
Christian Richter ◽  
Senada Nozinovic ◽  
Boris Fürtig ◽  
Jakob J. Lopez ◽  
...  

2016 ◽  
Vol 52 (96) ◽  
pp. 13873-13876 ◽  
Author(s):  
Jenifer Rubio-Magnieto ◽  
Mohit Kumar ◽  
Patrick Brocorens ◽  
Julien Idé ◽  
Subi J. George ◽  
...  

Templated cooperative binding induced assembly of chromophores is achieved via interactions between Zn-complexes and the DNA phosphodiester backbone.


2020 ◽  
Vol 48 (4) ◽  
pp. 1691-1700 ◽  
Author(s):  
Michael E Østergaard ◽  
Cheryl L De Hoyos ◽  
W Brad Wan ◽  
Wen Shen ◽  
Audrey Low ◽  
...  

Abstract Therapeutic oligonucleotides are often modified using the phosphorothioate (PS) backbone modification which enhances stability from nuclease mediated degradation. However, substituting oxygen in the phosphodiester backbone with sulfur introduce chirality into the backbone such that a full PS 16-mer oligonucleotide is comprised of 215 distinct stereoisomers. As a result, the role of PS chirality on the performance of antisense oligonucleotides (ASOs) has been a subject of debate for over two decades. We carried out a systematic analysis to determine if controlling PS chirality in the DNA gap region can enhance the potency and safety of gapmer ASOs modified with high-affinity constrained Ethyl (cEt) nucleotides in the flanks. As part of this effort, we examined the effect of systematically controlling PS chirality on RNase H1 cleavage patterns, protein mislocalization phenotypes, activity and toxicity in cells and in mice. We found that while controlling PS chirality can dramatically modulate interactions with RNase H1 as evidenced by changes in RNA cleavage patterns, these were insufficient to improve the overall therapeutic profile. We also found that controlling PS chirality of only two PS linkages in the DNA gap was sufficient to modulate RNase H1 cleavage patterns and combining these designs with simple modifications such as 2′-OMe to the DNA gap resulted in dramatic improvements in therapeutic index. However, we were unable to demonstrate improved potency relative to the stereorandom parent ASO or improved safety over the 2′-OMe gap-modified stereorandom parent ASO. Overall, our work shows that while controlling PS chirality can modulate RNase H1 cleavage patterns, ASO sequence and design are the primary drivers which determine the pharmacological and toxicological properties of gapmer ASOs.


2015 ◽  
Vol 63 (3) ◽  
pp. 291-298
Author(s):  
Saurabh Saxena ◽  
Jan Stanek ◽  
Mirko Cevec ◽  
Janez Plavec ◽  
Wiktor Koźmiński

2017 ◽  
Vol 136 (3) ◽  
Author(s):  
Katarzyna Świderek ◽  
Sergio Marti ◽  
Iñaki Tuñón ◽  
Vicent Moliner ◽  
Juan Bertran

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