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3.
Article in English | MEDLINE | ID: mdl-20636036

ABSTRACT

The ability to detect single molecules of DNA or RNA has led to an extremely rich area of exploration of the single most important biomolecule in nature. In cases in which the nucleic acid molecules are tethered to a solid support, confined to a channel, or simply allowed to diffuse into a detection volume, novel techniques have been developed to manipulate the DNA and to examine properties such as structural dynamics and protein-DNA interactions. Beyond the analysis of the properties of nucleic acids themselves, single-molecule detection has enabled dramatic improvements in the throughput of DNA sequencing and holds promise for continuing progress. Both optical and nonoptical detection methods that use surfaces, nanopores, and zero-mode waveguides have been attempted, and one optically based instrument is already commercially available. The breadth of literature related to single-molecule DNA analysis is vast; this review focuses on a survey of efforts in molecular dynamics and nucleic acid sequencing.


Subject(s)
DNA/analysis , DNA-Binding Proteins/chemistry , G-Quadruplexes , Molecular Dynamics Simulation , Nanostructures/chemistry , Sequence Analysis, DNA
4.
Nat Methods ; 6(8): 593-5, 2009 Aug.
Article in English | MEDLINE | ID: mdl-19620973

ABSTRACT

We synthesized reversible terminators with tethered inhibitors for next-generation sequencing. These were efficiently incorporated with high fidelity while preventing incorporation of additional nucleotides, and we used them to sequence canine bacterial artificial chromosomes in a single-molecule system that provided even coverage for over 99% of the region sequenced. This single-molecule approach generated high-quality sequence data without the need for target amplification and thus avoided concomitant biases.


Subject(s)
Chromosomes, Artificial, Bacterial/chemistry , DNA/chemistry , Nucleotides/chemistry , Sequence Analysis, DNA/methods , Animals , Chromatography, High Pressure Liquid , Chromosomes, Artificial, Bacterial/genetics , Computer Simulation , Dogs , Nucleotides/genetics , Sensitivity and Specificity , Substrate Specificity
5.
Science ; 320(5872): 106-9, 2008 Apr 04.
Article in English | MEDLINE | ID: mdl-18388294

ABSTRACT

The full promise of human genomics will be realized only when the genomes of thousands of individuals can be sequenced for comparative analysis. A reference sequence enables the use of short read length. We report an amplification-free method for determining the nucleotide sequence of more than 280,000 individual DNA molecules simultaneously. A DNA polymerase adds labeled nucleotides to surface-immobilized primer-template duplexes in stepwise fashion, and the asynchronous growth of individual DNA molecules was monitored by fluorescence imaging. Read lengths of >25 bases and equivalent phred software program quality scores approaching 30 were achieved. We used this method to sequence the M13 virus to an average depth of >150x and with 100% coverage; thus, we resequenced the M13 genome with high-sensitivity mutation detection. This demonstrates a strategy for high-throughput low-cost resequencing.


Subject(s)
Bacteriophage M13/genetics , DNA, Viral/genetics , Genome, Viral , Sequence Analysis, DNA/methods , Algorithms , Computational Biology/methods , DNA Primers , DNA, Viral/chemistry , Mutation , Sequence Alignment , Software , Templates, Genetic
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