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Spectroscopic studies of (m5dC-dG)3: thermal stability of B- and Z-forms

机译:(m5dC-dG)3的光谱研究:B型和Z型的热稳定性

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The hexanucleoside pentaphosphate d(m5CpGpm5CpGpm5CpG) has been studied in solution by ultra-violet absorption, circular dichroism and 31P nuclear magnetic resonance under various experimental conditions. In 0.2 M NaClO4 at low temperature, an hexamer duplex is formed which has a B or B-like conformation. As the salt concentration is increased, a transition from a B-form to the Z-form occurs and is complete in 3 M NaClO4. In 3 M NaClO4, the behavior of the Z double helix is complex as a function of temperature. The variation of the circular dichroism at 295 nm is biphasic. A first transition occurs over a large range of temperature and corresponds to a conformational change due to a non-cooperative intramolecular process. Ultra-violet absorption and 31P nuclear magnetic resonance show that the new conformation arising from a distortion of the backbone is not similar to that observed in low salt conditions (B-form). At high hexanucleotide concentration, aggregates are formed. The second transition is cooperative and corresponds to the melting of a double stranded helix into single strands.
机译:通过紫外吸收法,圆二色性和 31 P核磁共振。在低温下于0.2 M NaClO 4 中,形成具有B或B样构象的六聚体双链体。随着盐浓度的增加,在3 M NaClO 4 中会发生从B型到Z型的转变,并完全完成。在3 M NaClO 4 中,Z双螺旋的行为随温度而变。圆形二色性在295 nm处的变化是双相的。第一次转变发生在很大的温度范围内,并且对应于由于非合作分子内过程而导致的构象变化。紫外线吸收和 31 核磁共振表明,主链扭曲产生的新构象与低盐条件(B型)中观察到的构象不同。在高六核苷酸浓度下,会形成聚集体。第二个过渡是协作的,对应于双链螺旋熔化成单链。

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