The Effects of Molecular Crowding on the Structure and Stability of G-Quadruplexes with an Abasic Site
Author(s) -
Takeshi Fujimoto,
Shuichi Nakano,
Daisuke Miyoshi,
Naoki Sugimoto
Publication year - 2011
Publication title -
journal of nucleic acids
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.621
H-Index - 32
eISSN - 2090-021X
pISSN - 2090-0201
DOI - 10.4061/2011/857149
Subject(s) - ap site , circular dichroism , nucleic acid , guanine , dna , g quadruplex , chemistry , molecular dynamics , biophysics , crowding , biology , biochemistry , dna repair , computational chemistry , nucleotide , gene , neuroscience
Both cellular environmental factors and chemical modifications critically affect the properties of nucleic acids. However, the structure and stability of DNA containing abasic sites under cell-mimicking molecular crowding conditions remain unclear. Here, we investigated the molecular crowding effects on the structure and stability of the G-quadruplexes including a single abasic site. Structural analysis by circular dichroism showed that molecular crowding by PEG200 did not affect the topology of the G-quadruplex structure with or without an abasic site. Thermodynamic analysis further demonstrated that the degree of stabilization of the G-quadruplex by molecular crowding decreased with substitution of an abasic site for a single guanine. Notably, we found that the molecular crowding effects on the enthalpy change for G-quadruplex formation had a linear relationship with the abasic site effects depending on its position. These results are useful for predicting the structure and stability of G-quadruplexes with abasic sites in the cell-mimicking conditions
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