Literature DB >> 35858438

Emerging accessibility patterns in long telomeric overhangs.

Sajad Shiekh1, Golam Mustafa1, Sineth G Kodikara1, Mohammed Enamul Hoque2, Eric Yokie1, John J Portman1, Hamza Balci1.   

Abstract

We present single-molecule experimental and computational modeling studies investigating the accessibility of human telomeric overhangs of physiologically relevant lengths. We studied 25 different overhangs that contain 4-28 repeats of GGGTTA (G-Tract) sequence and accommodate one to seven tandem G-quadruplex (GQ) structures. Using the FRET-PAINT method, we probed the distribution of accessible sites via a short imager strand, which is complementary to a G-Tract and transiently binds to available sites. We report accessibility patterns that periodically change with overhang length and interpret these patterns in terms of the underlying folding landscape and folding frustration. Overhangs that have [4n]G-Tracts, (12, 16, 20…) demonstrate the broadest accessibility patterns where the peptide nucleic acid probe accesses G-Tracts throughout the overhang. On the other hand, constructs with [4n+2]G-Tracts, (14, 18, 22…) have narrower patterns where the neighborhood of the junction between single- and double-stranded telomeres is most accessible. We interpret these results as the folding frustration being higher in [4n]G-Tract constructs compared to [4n+2]G-Tract constructs. We also developed a computational model that tests the consistency of different folding stabilities and cooperativities between neighboring GQs with the observed accessibility patterns. Our experimental and computational studies suggest the neighborhood of the junction between single- and double-stranded telomeres is least stable and most accessible, which is significant as this is a potential site where the connection between POT1/TPP1 (bound to single-stranded telomere) and other shelterin proteins (localized on double-stranded telomere) is established.

Entities:  

Keywords:  FRET-PAINT; G-quadruplex; single molecule; telomere

Mesh:

Substances:

Year:  2022        PMID: 35858438      PMCID: PMC9335230          DOI: 10.1073/pnas.2202317119

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   12.779


  58 in total

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Journal:  RNA       Date:  2021-01-22       Impact factor: 4.942

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Authors:  Oscar Mendoza; Anne Bourdoncle; Jean-Baptiste Boulé; Robert M Brosh; Jean-Louis Mergny
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Journal:  Nat Chem       Date:  2020-07-20       Impact factor: 24.427

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  1 in total

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  1 in total

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