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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >On the formation of the double helix between adenine single strands at acidic pH from synchrotron radiation circular dichroism experiments
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On the formation of the double helix between adenine single strands at acidic pH from synchrotron radiation circular dichroism experiments

机译:同步辐射辐射圆二色性实验研究酸性pH条件下腺嘌呤单链间双螺旋的形成

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摘要

Here, we present synchrotron radiation circular dichroism spectra for a series of DNA adenine strands, (dA) n, n = 2-10, 15, at acidic pH. Reference spectra of a protonated single strand, (dAH ~+) _n, and a protonated double helix, (dAH ~+) _n:(dAH ~+) n, are provided in the wavelength region from 175 to 330 nm. The largest spectral difference between single and double strands is in the vacuum ultraviolet, where a band changes sign. This new spectral feature that characterizes double helix formation may be useful for analytical purposes but also for shedding light on the underlying complexation mechanism. Furthermore, we find that a minimum of eight or nine bases in a strand is needed for two (dAH ~+) _n strands to form a duplex. This is a relatively high number as compared with guanine quadruplex and cytosine i-motif formation, which is likely linked to the significant Coulomb repulsion between the all-protonated bases. Finally, spectra recorded as a function of time after sample preparation indicates that the equilibrium is slowly reached, in certain cases taking an hour or more.
机译:在这里,我们介绍了在酸性pH下一系列DNA腺嘌呤链(dA)n,n = 2-10,15的同步加速器辐射圆二色性光谱。质子化的单链(dAH〜+)_n和质子化的双螺旋(dAH〜+)_n:(dAH〜+)n的参考光谱在175至330 nm的波长范围内提供。单链和双链之间最大的光谱差异是在真空紫外线中,在该光谱中带会改变符号。表征双螺旋形成的这一新光谱特征可能对分析目的有用,但也可以使潜在的络合机理上的光逸散。此外,我们发现一条链中至少需要八个或九个碱基才能使两个(dAH〜+)_n链形成双链体。与鸟嘌呤四链体和胞嘧啶i-基序形成相比,这是一个相对较高的数字,这可能与全质子化碱基之间的显着库仑排斥有关。最后,样品制备后随时间变化记录的光谱表明,达到平衡缓慢,在某些情况下需要一个小时或更长时间。

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