Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex
93del is a 16-nucleotide G-quadruplex-forming aptamer which can inhibit the activity of the HIV-1 integrase enzyme at nanomolar concentration. Previous structural analyses of 93del using NMR spectroscopy have shown that the aptamer forms an interlocked G-quadruplex structure in K+ solution. Due to i...
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sg-ntu-dr.10356-1583332023-02-28T20:04:32Z Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex Ngo, Khac Huy Liew, Chong Wai Lattmann, Simon Winnerdy, Fernaldo Richtia Phan, Anh Tuân School of Physical and Mathematical Sciences NTU Institute of Structural Biology Science::Biological sciences Science::Chemistry G-Quadruplexes Interlocked 93del is a 16-nucleotide G-quadruplex-forming aptamer which can inhibit the activity of the HIV-1 integrase enzyme at nanomolar concentration. Previous structural analyses of 93del using NMR spectroscopy have shown that the aptamer forms an interlocked G-quadruplex structure in K+ solution. Due to its exceptional stability and unique topology, 93del has been used in many different studies involving DNA G-quadruplexes, such as DNA aptamer and multimer design, as well as DNA fluorescence research. To gain further insights on the structure of this unique aptamer, we have determined several high-resolution crystal structures of 93del and its variants. While confirming the overall dimeric interlocked G-quadruplex folding topology previously determined by NMR, our results reveal important detailed structural information, particularly the formation of a water-mediated A•G•G•G•G pentad. These insights allow us to better understand the formation of various structural elements in G-quadruplexes and should be useful for designing and manipulating G-quadruplex scaffolds with desired properties. Ministry of Education (MOE) National Research Foundation (NRF) Submitted/Accepted version This work was supported by Singapore National Research Foundation Investigatorship (NRF-NRFI2017-09) and Singapore Ministry of Education Academic Research Fund Tier 2 (MOE2018-T2-2-029). 2022-05-19T02:16:45Z 2022-05-19T02:16:45Z 2022 Journal Article Ngo, K. H., Liew, C. W., Lattmann, S., Winnerdy, F. R. & Phan, A. T. (2022). Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex. Biochemical and Biophysical Research Communications, 613, 153-158. https://dx.doi.org/10.1016/j.bbrc.2022.04.020 0006-291X https://hdl.handle.net/10356/158333 10.1016/j.bbrc.2022.04.020 613 153 158 en NRF-NRFI2017-09 MOE2018-T2-2-029 Biochemical and Biophysical Research Communications © 2022 Elsevier Inc. All rights reserved. This paper was published in Biochemical and Biophysical Research Communications and is made available with permission of Elsevier Inc. application/pdf |
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Science::Biological sciences Science::Chemistry G-Quadruplexes Interlocked Ngo, Khac Huy Liew, Chong Wai Lattmann, Simon Winnerdy, Fernaldo Richtia Phan, Anh Tuân Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex |
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93del is a 16-nucleotide G-quadruplex-forming aptamer which can inhibit the activity of the HIV-1 integrase enzyme at nanomolar concentration. Previous structural analyses of 93del using NMR spectroscopy have shown that the aptamer forms an interlocked G-quadruplex structure in K+ solution. Due to its exceptional stability and unique topology, 93del has been used in many different studies involving DNA G-quadruplexes, such as DNA aptamer and multimer design, as well as DNA fluorescence research. To gain further insights on the structure of this unique aptamer, we have determined several high-resolution crystal structures of 93del and its variants. While confirming the overall dimeric interlocked G-quadruplex folding topology previously determined by NMR, our results reveal important detailed structural information, particularly the formation of a water-mediated A•G•G•G•G pentad. These insights allow us to better understand the formation of various structural elements in G-quadruplexes and should be useful for designing and manipulating G-quadruplex scaffolds with desired properties. |
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School of Physical and Mathematical Sciences |
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School of Physical and Mathematical Sciences Ngo, Khac Huy Liew, Chong Wai Lattmann, Simon Winnerdy, Fernaldo Richtia Phan, Anh Tuân |
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Article |
author |
Ngo, Khac Huy Liew, Chong Wai Lattmann, Simon Winnerdy, Fernaldo Richtia Phan, Anh Tuân |
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Ngo, Khac Huy |
title |
Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex |
title_short |
Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex |
title_full |
Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex |
title_fullStr |
Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex |
title_full_unstemmed |
Crystal structures of an HIV-1 integrase aptamer: formation of a water-mediated A•G•G•G•G pentad in an interlocked G-quadruplex |
title_sort |
crystal structures of an hiv-1 integrase aptamer: formation of a water-mediated a•g•g•g•g pentad in an interlocked g-quadruplex |
publishDate |
2022 |
url |
https://hdl.handle.net/10356/158333 |
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1759856984744525824 |