Literature DB >> 29136243

Structure and electrical properties of DNA nanotubes embedded in lipid bilayer membranes.

Himanshu Joshi1, Prabal K Maiti1.   

Abstract

Engineering the synthetic nanopores through lipid bilayer membrane to access the interior of a cell is a long persisting challenge in biotechnology. Here, we demonstrate the stability and dynamics of a tile-based 6-helix DNA nanotube (DNT) embedded in POPC lipid bilayer using the analysis of 0.2 μs long equilibrium MD simulation trajectories. We observe that the head groups of the lipid molecules close to the lumen cooperatively tilt towards the hydrophilic sugar-phosphate backbone of DNA and form a toroidal structure around the patch of DNT protruding in the membrane. Further, we explore the effect of ionic concentrations to the in-solution structure and stability of the lipid-DNT complex. Transmembrane ionic current measurements for the constant electric field MD simulation provide the I-V characteristics of the water filled DNT lumen in lipid membrane. With increasing salt concentrations, the measured values of transmembrane ionic conductance of the porous DNT lumen vary from 4.3 to 20.6 nS. Simulations of the DNTs with ssDNA and dsDNA overhangs at the mouth of the pore show gating effect with remarkable difference in the transmembrane ionic conductivities for open and close state nanopores.

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Year:  2018        PMID: 29136243      PMCID: PMC5861442          DOI: 10.1093/nar/gkx1078

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  55 in total

1.  Rapid electronic detection of probe-specific microRNAs using thin nanopore sensors.

Authors:  Meni Wanunu; Tali Dadosh; Vishva Ray; Jingmin Jin; Larry McReynolds; Marija Drndić
Journal:  Nat Nanotechnol       Date:  2010-10-24       Impact factor: 39.213

2.  Estimation of activation energy for electroporation and pore growth rate in liquid crystalline and gel phases of lipid bilayers using molecular dynamics simulations.

Authors:  Amit Kumar Majhi; Subbarao Kanchi; V Venkataraman; K G Ayappa; Prabal K Maiti
Journal:  Soft Matter       Date:  2015-11-28       Impact factor: 3.679

3.  Direct Simulation of the Self-Assembly of a Small DNA Origami.

Authors:  Benedict E K Snodin; Flavio Romano; Lorenzo Rovigatti; Thomas E Ouldridge; Ard A Louis; Jonathan P K Doye
Journal:  ACS Nano       Date:  2016-01-22       Impact factor: 15.881

4.  Folding DNA to create nanoscale shapes and patterns.

Authors:  Paul W K Rothemund
Journal:  Nature       Date:  2006-03-16       Impact factor: 49.962

5.  The DNA structure responds differently to physiological concentrations of K(+) or Na(+).

Authors:  Brahim Heddi; Nicolas Foloppe; Edith Hantz; Brigitte Hartmann
Journal:  J Mol Biol       Date:  2007-03-12       Impact factor: 5.469

6.  Characterization of individual polynucleotide molecules using a membrane channel.

Authors:  J J Kasianowicz; E Brandin; D Branton; D W Deamer
Journal:  Proc Natl Acad Sci U S A       Date:  1996-11-26       Impact factor: 11.205

7.  Self-assembled DNA nanopores that span lipid bilayers.

Authors:  Jonathan R Burns; Eugen Stulz; Stefan Howorka
Journal:  Nano Lett       Date:  2013-06-12       Impact factor: 11.189

8.  Switchable domain partitioning and diffusion of DNA origami rods on membranes.

Authors:  Aleksander Czogalla; Eugene P Petrov; Dominik J Kauert; Veselina Uzunova; Yixin Zhang; Ralf Seidel; Petra Schwille
Journal:  Faraday Discuss       Date:  2013       Impact factor: 4.008

9.  A modified version of the Cornell et al. force field with improved sugar pucker phases and helical repeat.

Authors:  T E Cheatham; P Cieplak; P A Kollman
Journal:  J Biomol Struct Dyn       Date:  1999-02

10.  Molecular transport through large-diameter DNA nanopores.

Authors:  Swati Krishnan; Daniela Ziegler; Vera Arnaut; Thomas G Martin; Korbinian Kapsner; Katharina Henneberg; Andreas R Bausch; Hendrik Dietz; Friedrich C Simmel
Journal:  Nat Commun       Date:  2016-09-23       Impact factor: 14.919

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  4 in total

1.  Dynamic Interactions between Lipid-Tethered DNA and Phospholipid Membranes.

Authors:  Patrick M Arnott; Himanshu Joshi; Aleksei Aksimentiev; Stefan Howorka
Journal:  Langmuir       Date:  2018-10-10       Impact factor: 3.882

2.  Controlling aggregation of cholesterol-modified DNA nanostructures.

Authors:  Alexander Ohmann; Kerstin Göpfrich; Himanshu Joshi; Rebecca F Thompson; Diana Sobota; Neil A Ranson; Aleksei Aksimentiev; Ulrich F Keyser
Journal:  Nucleic Acids Res       Date:  2019-12-02       Impact factor: 16.971

Review 3.  The Fusion of Lipid and DNA Nanotechnology.

Authors:  Es Darley; Jasleen Kaur Daljit Singh; Natalie A Surace; Shelley F J Wickham; Matthew A B Baker
Journal:  Genes (Basel)       Date:  2019-12-03       Impact factor: 4.096

4.  Triggered Assembly of a DNA-Based Membrane Channel.

Authors:  Conor Lanphere; Jonah Ciccone; Adam Dorey; Nora Hagleitner-Ertuğrul; Denis Knyazev; Shozeb Haider; Stefan Howorka
Journal:  J Am Chem Soc       Date:  2022-03-07       Impact factor: 15.419

  4 in total

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