Experimental study of a nanoscale translocation ratchet

Author:

Molcrette Bastien1ORCID,Chazot-Franguiadakis Léa1ORCID,Liénard François1ORCID,Balassy Zsombor2,Freton Céline3ORCID,Grangeasse Christophe3ORCID,Montel Fabien1ORCID

Affiliation:

1. Laboratoire de Physique, CNRS UMR 5672, Université Claude Bernard, Ecole Normale Supérieure de Lyon, Université de Lyon, F-69342 Lyon, France

2. LUMICKS, 1059 CH Amsterdam, The Netherlands

3. Laboratoire de Microbiologie Moléculaire et Biochimie Structurale, CNRS UMR 5086, Université de Lyon, 69007 Lyon, France

Abstract

Despite an extensive theoretical and numerical background, the translocation ratchet mechanism, which is fundamental for the transmembrane transport of biomolecules, has never been experimentally reproduced at the nanoscale. Only the Sec61 and bacterial type IV pilus pores were experimentally shown to exhibit a translocation ratchet mechanism. Here we designed a synthetic translocation ratchet and quantified its efficiency as a nanopump. We measured the translocation frequency of DNA molecules through nanoporous membranes and showed that polycations at the trans side accelerated the translocation in a ratchet-like fashion. We investigated the ratchet efficiency according to geometrical and kinetic parameters and observed the ratchet to be only dependent on the size of the DNA molecule with a power law N 0.6 . A threshold length of 3 kbp was observed, below which the ratchet did not operate. We interpreted this threshold in a DNA looping model, which quantitatively explained our results.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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