The institute
FEMTO's news

You are here

Does the i-motif structure of DNA exist in the cell?

As part of an interdisciplinary project involving FEMTO-ST, a new scientific study is reopening the debate on the very existence of these structures in DNA and their potential therapeutic interest in cell biology for the treatment of certain cancers.

More than 60 years ago, the double helix structure of DNA was discovered and was to have a major impact on molecular biology research for decades to come. In recent years, however, other DNA structures have aroused the enthusiasm of researchers, in particular tetrameric structures such as G-quadruplexes (G4s) and i-patterns.

G4s, consisting of a stack of guanine tetrads, are obtained when the DNA sequence is rich in guanines. The presence of these G4 structures has been demonstrated for many years and they are an avenue being explored for the treatment of cancers. If one strand is guanine-rich, its complementary strand is cytosine-rich. It has been shown in vitro that these cytosine-rich sequences are also capable under acidic conditions (pH<6) of folding into tetrameric structures to form i-motifs.

However, the formation of these i-motif structures within cells is highly controversial due to the need for an acidic pH. Recently, an Australian team developed a new antibody (i-Mab) to detect the presence of i-motif DNA at cellular level and thus prove its presence.

This article, published in ‘Nucleic Acids Research’, presents a new study of the recognition properties of this i-Mab antibody and calls into question previous conclusions. The researchers re-evaluated the recognition properties of this antibody at acidic and physiological pH, supplementing them in particular with a study of other oligonucleotides rich in cytosine but not forming an i-motif. They demonstrated that the i-Mab antibody not only recognised the i-motif conformation but also other sequences rich in cytosine but unable to form an i-motif. More specifically, the results suggest that the binding of iMab to oligonucleotides is governed by the presence of at least two consecutive cytosines. In addition, FRET analyses indicate that interaction with iMab results in unfolding of the i-motif structures even under acidic conditions, in a manner similar to that observed with hnRNP K, a single-stranded DNA-binding protein.
The results strongly suggest that the iMab antibody binds to blocks of 2 to 3 cytosines in single-stranded DNA and call for a more cautious interpretation of the results obtained with this antibody.

This work was carried out as part of the ANR ICARE (ANR-21-CE44-0005) and PRIME'80 programmes, involving researchers from the Department of Molecular Chemistry (CNRS/University of Grenoble Alpes) in close collaboration with the Institut Curie (CNRS/Paris Saclay), the Institute of Pharmacology and Structural Biology (CNRS/University of Toulouse) and the FEMTO-ST Institute (CNRS/University of Bourgogne-Franche-Comté).

This publication (https://doi.org/10.1093/nar/gkae531) a was the subject of an article in  CNRS chimie

Contact FEMTO-ST : Jérôme Dejeu

 

Award
  • Enrico Rubiola honored at IFCS 2018

    Enrico Rubiola will receive the W. G. Cady Award at the IFCS 2018 on May 24th.

    Read more
  • L'institut FEMTO-ST partenaire d'un programme européen Marie-Curie H2020 Innovative Training Networ

    The department of Optics of the FEMTO-ST research institute in Besançon
    in France currently has a vacancy for 2 3-years Ph.D positions working in
    the development of mid-infrared and ultraviolet supercontinuum fiber sources within the

    Read more
  • FACS 2016 - The 13th International Conference on Formal Aspects of Component Software

    The DISC department, organizer of the 13th International Conference on FACS.

    Read more
  • Special issue of Comptes Rendus Physique on phononic crystals

    The May 2016 issue of Comptes Rendus Physique (an international peer-reviewed journal of the French Academy of Sciences), is devoted to phononic crystals. This special issue was coordinated by Vincent Laude.

    Read more
  • Paper prize at the international conference VPPC 2014

    At the International IEEE "Vehicle Power and Propulsion Conference" conference held in Coimbra, Portugal from 27 to 30 October 2014, “Hybrid & Fuel Cell Systems” Research Team of Femto-ST Institute won the Paper Prize for the paper titled “Energy management of an hybrid electrical vehicule in degraded operation”

    Read more
  • A book about flexible robotics co-written by Nicolas Chaillet

    The objective of the book "Flexible Robotics: Applications to Multiscale Manipulations" is to provide those interested in the field of flexible robotics with an overview of several scientific and technological advances in the practical field of robotic manipulation.

    Read more
  • Nonlinear Optics and Supercontinuum Symposium

    A one day “Nonlinear Optics and Supercontinuum Symposium” will be held on Friday 20 September in the Amphi FEMTO in honour of Professor Chinlon Lin who will be here in Besançon during this time.

    Read more
  • European Time and Frequency Seminar (EFTS)

    The European Frequency an Time Seminar (EFTS) will be held from Monday, August 16 to friday, August 30 2013.

    Read more
  • Two ERC Grants for FEMTO-ST Institute in 2011

    Prof John DUDLEY & Dr Yanne CHEMBO from the Optics Depmarment of FEMTO-ST Institute (UMR 6174 CNRS-Université de Franche-Comté) have both received a financial Grant from the European Research Council (ERC) to support the top level scientific excellence of their research projects

    Read more
  • Michel planat makes the Insights News of the Journal of Physics A: Mathematical and Theoretical

    Michel Planat's Insights news article "Quantum computing with Riemann hypothesis" is now available on the journal's website and can be viewed at http://iopscience.iop.org/1751-8121/labtalk-article/45421. This news article is based on the recent paper published by the Journal of Physics A: Mathematical and Theoretical.

    Read more

Pages