Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH

Asides from the common double stranded structure, nucleic acids depending on the base content and environmental condition may take many non-canonical secondary structures, including the fourstranded intercalated i-motif structure formed from cytosine-rich sequences that are abundant throughout the...

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Main Authors: Ma, Chensheng, Chan, Ruth Chau-Ting, Kwok, Wai-Ming
Other Authors: Asian Spectroscopy Conference 2020
Format: Conference or Workshop Item
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/144405
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spelling sg-ntu-dr.10356-1444052020-11-05T20:10:54Z Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH Ma, Chensheng Chan, Ruth Chau-Ting Kwok, Wai-Ming Asian Spectroscopy Conference 2020 Institute of Advanced Studies Science::Chemistry Ultrafast Spectroscopy Excitation Dynamics Asides from the common double stranded structure, nucleic acids depending on the base content and environmental condition may take many non-canonical secondary structures, including the fourstranded intercalated i-motif structure formed from cytosine-rich sequences that are abundant throughout the human genome.[1,2] The structures of i-motifs are known to be stable at slightly acidic condition, whether they can also be formed at the physiologically relevant neutral pH condition remains elusive and currently one of the frontier issues in the study of non-canonical nucleic acid structures.[3,4] Herein we present a comparative steady-state and ultrafast time-resolved fluorescence investigation of a homo-oligomeric and human telomeric cytosine-rich sequence at both the acidic and neutral pH. Published version 2020-11-03T07:42:05Z 2020-11-03T07:42:05Z 2020 Conference Paper Ma, C., Chan, R. C.-T., & Kwok W.-M. (2020). Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH. Proc. Of the 7th Asian Spectroscopy Conference (ASC 2020). doi:10.32655/ASC_8-10_Dec2020.73 https://hdl.handle.net/10356/144405 10.32655/ASC_8-10_Dec2020.73 en © 2020 Nanyang Technological University application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::Chemistry
Ultrafast Spectroscopy
Excitation Dynamics
spellingShingle Science::Chemistry
Ultrafast Spectroscopy
Excitation Dynamics
Ma, Chensheng
Chan, Ruth Chau-Ting
Kwok, Wai-Ming
Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH
description Asides from the common double stranded structure, nucleic acids depending on the base content and environmental condition may take many non-canonical secondary structures, including the fourstranded intercalated i-motif structure formed from cytosine-rich sequences that are abundant throughout the human genome.[1,2] The structures of i-motifs are known to be stable at slightly acidic condition, whether they can also be formed at the physiologically relevant neutral pH condition remains elusive and currently one of the frontier issues in the study of non-canonical nucleic acid structures.[3,4] Herein we present a comparative steady-state and ultrafast time-resolved fluorescence investigation of a homo-oligomeric and human telomeric cytosine-rich sequence at both the acidic and neutral pH.
author2 Asian Spectroscopy Conference 2020
author_facet Asian Spectroscopy Conference 2020
Ma, Chensheng
Chan, Ruth Chau-Ting
Kwok, Wai-Ming
format Conference or Workshop Item
author Ma, Chensheng
Chan, Ruth Chau-Ting
Kwok, Wai-Ming
author_sort Ma, Chensheng
title Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH
title_short Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH
title_full Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH
title_fullStr Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH
title_full_unstemmed Ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral pH
title_sort ultrafast time-resolved fluorescence study on formation and excitation dynamics of human telomeric and homo-oligomeric i-motifs at neutral ph
publishDate 2020
url https://hdl.handle.net/10356/144405
_version_ 1688665642457104384