Literature DB >> 19154151

ILPR G-quadruplexes formed in seconds demonstrate high mechanical stabilities.

Zhongbo Yu1, Joseph D Schonhoft, Soma Dhakal, Rabindra Bajracharya, Ravi Hegde, Soumitra Basu, Hanbin Mao.   

Abstract

The insulin linked polymorphism region (ILPR) is known to regulate transcription of the gene coding for insulin. The ILPR has guanine rich segments, suggesting that G quadruplexes may be responsible for this regulatory role. Using mechanical unfolding in a laser tweezers instrument and circular dichroism (CD) spectroscopy, we provide compelling evidence that highly stable parallel and antiparallel G quadruplex structures coexist in the predominant ILPR sequence of (ACAGGGGTGTGGGG)(2) at a physiologically relevant concentration of 100 mM KCl. Experiments at the single molecular level have shown that unfolding forces for parallel and antiparallel structures (F(unfold): 22.6 vs 36.9 pN, respectively) are higher than the stall forces of enzymes having helicase activities. From a mechanical perspective alone, these data support the hypothesis that G quadruplexes may cause replication slippage by blocking replication process. Using the unique combination of the rupture force and the contour length measured by laser tweezers, the simultaneous determination of probable parallel and antiparallel G quadruplex structures in a solution mixture has been achieved. Jarzynski's equality analysis has revealed that the antiparallel G quadruplex is thermodynamically more stable than the parallel conformer (DeltaG (unfold): 23 vs 14 kcal/mol, respectively). On the other hand, kinetic measurements have indicated that both parallel and antiparallel structures fold rather rapidly (k(fold): 0.4 vs 0.3 s(-1), respectively), suggesting that they may be kinetically accessible for gene control. This work provides an unprecedented mechanical perspective on G quadruplex stability, presenting a unique opportunity to predict the functional consequence when motor enzymes encounter such structures.

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Year:  2009        PMID: 19154151     DOI: 10.1021/ja806782s

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  32 in total

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4.  G-ruption: the third international meeting on G-quadruplex and G-assembly.

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5.  Tertiary DNA structure in the single-stranded hTERT promoter fragment unfolds and refolds by parallel pathways via cooperative or sequential events.

Authors:  Zhongbo Yu; Vanessa Gaerig; Yunxi Cui; HyunJin Kang; Vijay Gokhale; Yuan Zhao; Laurence H Hurley; Hanbin Mao
Journal:  J Am Chem Soc       Date:  2012-03-09       Impact factor: 15.419

6.  Molecular population dynamics of DNA structures in a bcl-2 promoter sequence is regulated by small molecules and the transcription factor hnRNP LL.

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Journal:  Nucleic Acids Res       Date:  2014-03-07       Impact factor: 16.971

7.  Topological impact of noncanonical DNA structures on Klenow fragment of DNA polymerase.

Authors:  Shuntaro Takahashi; John A Brazier; Naoki Sugimoto
Journal:  Proc Natl Acad Sci U S A       Date:  2017-08-21       Impact factor: 11.205

8.  Duplex DNA Is Weakened in Nanoconfinement.

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Journal:  J Am Chem Soc       Date:  2020-05-21       Impact factor: 15.419

9.  Single molecule force spectroscopy on G-quadruplex DNA.

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Journal:  Chemistry       Date:  2009-08-17       Impact factor: 5.236

10.  Direct experimental evidence for quadruplex-quadruplex interaction within the human ILPR.

Authors:  Joseph D Schonhoft; Rabindra Bajracharya; Soma Dhakal; Zhongbo Yu; Hanbin Mao; Soumitra Basu
Journal:  Nucleic Acids Res       Date:  2009-03-25       Impact factor: 16.971

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