Probe for i-motif structure and G-rich strands using end-stacking ability. Lee, I. J., Yi, J. W., & Kim, B. H. Chemical communications (Cambridge, England), October, 2009.
Paper doi abstract bibtex We suggest a novel method for probing human i-motif structure based on a pi-stacking interaction between a base pair of two cytosines and a non-polar aromatic fluorophore, PyA, at the end position.
@article{Lee2009,
title = {Probe for i-motif structure and {G}-rich strands using end-stacking ability.},
issn = {1364-548X},
url = {http://www.ncbi.nlm.nih.gov/pubmed/19724792},
doi = {10.1039/b908624b},
abstract = {We suggest a novel method for probing human i-motif structure based on a pi-stacking interaction between a base pair of two cytosines and a non-polar aromatic fluorophore, PyA, at the end position.},
number = {36},
journal = {Chemical communications (Cambridge, England)},
author = {Lee, Il Joon and Yi, Jeong Wu and Kim, Byeang Hyean},
month = oct,
year = {2009},
pmid = {19724792},
keywords = {\#nosource, Circular Dichroism, DNA, DNA: chemistry, Deoxyadenosines, Deoxyadenosines: chemical synthesis, Deoxyadenosines: chemistry, Fluorescence, Fluorescent Dyes, Fluorescent Dyes: chemical synthesis, Fluorescent Dyes: chemistry, GC Rich Sequence, Humans, Hydrogen-Ion Concentration, Nucleic Acid Conformation, Oligodeoxyribonucleotides, Oligodeoxyribonucleotides: chemistry, Pyrenes, Pyrenes: chemistry, Single-Stranded, Single-Stranded: chemistry, Spectrometry, Spectrophotometry, Telomere, Telomere: chemistry, Transition Temperature, Ultraviolet},
pages = {5383--5},
}
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