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Underwound DNA under tension: L-DNA vs. plectoneme
- Son, Anmin;
- Kwon, Ah-Young;
- Johner, Albert;
- Hong, Seok-Cheol;
- Lee, Nam-Kyung
WEB OF SCIENCE
7SCOPUS
7초록
In many biological processes DNA experiences force in the pN range and torque that underwinds it. Magnetic tweezers experiments show that the superhelicity(sigma)-extension curve, the so-called bell curve, is asymmetric with respect to the inversion of sigma. We study the case of underwound DNA which was not addressed theoretically before. While the case of overwound DNA is fully explained by the formation of supercoil, the extension of underwound DNA reveals non-trivial tension dependence. We show that plectonemic coils form at moderate tension, whereas left-handed DNA, so-called "L-DNA", prevails at high tension (above approximate to 0.5 pN). In a narrow but physiologically relevant crossover range of tension, that is between 0.4 pN and 0.7 pN, extra unwinding turns are statistically distributed to either plectoneme or L-DNA. In this regime the states of a torsionally stressed DNA should be most sensitive to external mechanical stimuli. Copyright (C) EPLA, 2014
키워드
- 제목
- Underwound DNA under tension: L-DNA vs. plectoneme
- 저자
- Son, Anmin; Kwon, Ah-Young; Johner, Albert; Hong, Seok-Cheol; Lee, Nam-Kyung
- 발행일
- 2014-02
- 유형
- Article
- 권
- 105
- 호
- 4