| Literature DB >> 22747101 |
Swati Bhattacharya1, Ian M Derrington, Mikhail Pavlenok, Michael Niederweis, Jens H Gundlach, Aleksei Aksimentiev.
Abstract
The protein nanopore Mycobacteria smegmatis porin A (MspA), can be used to sense individual nucleotides within DNA, potentially enabling a technique known as nanopore sequencing. In this technique, single-stranded DNA electrophoretically moves through the nanopore and results in an ionic current that is nucleotide-specific. However, with a high transport velocity of the DNA within the nanopore, the ionic current cannot be used to distinguish signals within noise. Through extensive (~100 μs in total) all-atom molecular dynamics simulations, we examine the effect of positively charged residues on DNA translocation rate and the ionic current blockades in MspA. Simulation of several arginine mutations show a ~10-30 fold reduction of DNA translocation speed without eliminating the nucleotide induced current blockages. Comparison of our results with similar engineering efforts on a different nanopore (α-hemolysin) reveals a nontrivial effect of nanopore geometry on the ionic current blockades in mutant nanopores.Entities:
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Year: 2012 PMID: 22747101 PMCID: PMC3448955 DOI: 10.1021/nn3019943
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881