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1Y84

Crystal structure of the A-DNA GCGTAT*CGC with a 2'-O-[2-(imidazolyl)ethyl] Thymidine (T*)

Summary for 1Y84
Entry DOI10.2210/pdb1y84/pdb
Related1Y7F 1Y86
Descriptor5'-D(*GP*CP*GP*TP*AP*(EIT)P*AP*CP*GP*C)-3', MAGNESIUM ION, SPERMINE, ... (4 entities in total)
Functional Keywordsa-dna, o2'-modification, decamer., dna
Total number of polymer chains2
Total formula weight6536.88
Authors
Egli, M.,Minasov, G.,Tereshko, V.,Pallan, P.S.,Teplova, M.,Inamati, G.B.,Lesnik, E.A.,Owens, S.R.,Ross, B.S.,Prakash, T.P.,Manoharan, M. (deposition date: 2004-12-10, release date: 2005-06-28, Last modification date: 2023-08-23)
Primary citationEgli, M.,Minasov, G.,Tereshko, V.,Pallan, P.S.,Teplova, M.,Inamati, G.B.,Lesnik, E.A.,Owens, S.R.,Ross, B.S.,Prakash, T.P.,Manoharan, M.
Probing the Influence of Stereoelectronic Effects on the Biophysical Properties of Oligonucleotides: Comprehensive Analysis of the RNA Affinity, Nuclease Resistance, and Crystal Structure of Ten 2'-O-Ribonucleic Acid Modifications.
Biochemistry, 44:9045-9057, 2005
Cited by
PubMed Abstract: The syntheses of 10 new RNA 2'-O-modifications, their incorporation into oligonucleotides, and an evaluation of their properties such as RNA affinity and nuclease resistance relevant to antisense activity are presented. All modifications combined with the natural phosphate backbone lead to significant gains in terms of the stability of hybridization to RNA relative to the first-generation DNA phosphorothioates (PS-DNA). The nuclease resistance afforded in particular by the 2'-O-modifications carrying a positive charge surpasses that of PS-DNA. However, small electronegative 2'-O-substituents, while enhancing the RNA affinity, do not sufficiently protect against degradation by nucleases. Similarly, oligonucleotides containing 3'-terminal residues modified with the relatively large 2'-O-[2-(benzyloxy)ethyl] substituent are rapidly degraded by exonucleases, proving wrong the assumption that steric bulk will generally improve protection against nuclease digestion. To analyze the factors that contribute to the enhanced RNA affinity and nuclease resistance we determined crystal structures of self-complementary A-form DNA decamer duplexes containing single 2'-O-modified thymidines per strand. Conformational preorganization of substituents, favorable electrostatic interactions between substituent and sugar-phosphate backbone, and a stable water structure in the vicinity of the 2'-O-modification all appear to contribute to the improved RNA affinity. Close association of positively charged substituents and phosphate groups was observed in the structures with modifications that protect most effectively against nucleases. The promising properties exhibited by some of the analyzed 2'-O-modifications may warrant a more detailed evaluation of their potential for in vivo antisense applications. Chemical modification of RNA can also be expected to significantly improve the efficacy of small interfering RNAs (siRNA). Therefore, the 2'-O-modifications introduced here may benefit the development of RNAi therapeutics.
PubMed: 15966728
DOI: 10.1021/bi050574m
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.6 Å)
Structure validation

227561

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