2018
DOI: 10.1093/nar/gky531
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TAMRA-polypyrrole for A/T sequence visualization on DNA molecules

Abstract: Fluorophore-linked, sequence-specific DNA binding reagents can visualize sequence information on a large DNA molecule. In this paper, we synthesized newly designed TAMRA-linked polypyrrole to visualize adenine and thymine base pairs. A fluorescent image of the stained DNA molecule generates an intensity profile based on A/T frequency, revealing a characteristic sequence composition pattern. Computer-aided comparison of this intensity pattern with the genome sequence allowed us to determine the DNA sequence on … Show more

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Cited by 15 publications
(12 citation statements)
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“…Figure 1 compares surface-tethered DNA molecules dependent on the staining reagents. First of all, TAMRA-polypyrrole stained DNA ( 2 in Figure 1) stretched up to 14.03 ± 0.54 µm ( X / L = 86% ± 3%) at 100 µL/min within 100 µm high flow cell [29]. Previously, we calculated the force of 0.79 pN applied to the λ DNA in the same flow cell (100 µL/min) [27].…”
Section: Resultsmentioning
confidence: 99%
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“…Figure 1 compares surface-tethered DNA molecules dependent on the staining reagents. First of all, TAMRA-polypyrrole stained DNA ( 2 in Figure 1) stretched up to 14.03 ± 0.54 µm ( X / L = 86% ± 3%) at 100 µL/min within 100 µm high flow cell [29]. Previously, we calculated the force of 0.79 pN applied to the λ DNA in the same flow cell (100 µL/min) [27].…”
Section: Resultsmentioning
confidence: 99%
“…For this experiment, we used T4 DNA instead of λ DNA, because high A/T content in T4 DNA provided more precise visualization of entire molecules. TAMRA-polypyrrole generally stains AT-rich regions specifically via hydrogen bonding on minor groove [29]. Therefore, λ DNA is not an appropriate model molecule because the first half of the λ DNA has CG-rich regions, showing dim DNA backbone (see Figure 2B) [29], which is practically unfavorable in a nanochannel.…”
Section: Resultsmentioning
confidence: 99%
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“…Large DNA molecules have been a versatile platform to investigate a variety of genomic, epigenetic, biochemical, and biophysical studies 1 . For genome analysis, Optical Mapping and nanocoding have been representative single-molecule analytical systems to obtain DNA physical maps 26 . They have been applied for many genome projects to aid genome assembly with sequencing 7,8 , as well as to reveal large scale structural variations of the genome 9,10 .…”
Section: Introductionmentioning
confidence: 99%