| Literature DB >> 26448329 |
Jiro Kondo1,2, Yoshinari Tada3, Takenori Dairaku4, Hisao Saneyoshi5, Itaru Okamoto5, Yoshiyuki Tanaka4,6, Akira Ono5.
Abstract
Metallo-base pairs have been extensively studied for applications in nucleic acid-based nanodevices and genetic code expansion. Metallo-base pairs composed of natural nucleobases are attractive because nanodevices containing natural metallo-base pairs can be easily prepared from commercially available sources. Previously, we have reported a crystal structure of a DNA duplex containing T-Hg(II)-T base pairs. Herein, we have determined a high-resolution crystal structure of the second natural metallo-base pair between pyrimidine bases C-Ag(I)-C formed in an RNA duplex. One Ag(I) occupies the center between two cytosines and forms a C-Ag(I)-C base pair through N3-Ag(I)-N3 linear coordination. The C-Ag(I)-C base pair formation does not disturb the standard A-form conformation of RNA. Since the C-Ag(I)-C base pair is structurally similar to the canonical Watson-Crick base pairs, it can be a useful building block for structure-based design and fabrication of nucleic acid-based nanodevices.Entities:
Keywords: RNA; X-ray analysis; crystal structure; metallo-base pairs; silver
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Year: 2015 PMID: 26448329 DOI: 10.1002/anie.201507894
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336