首页> 美国卫生研究院文献>Biophysical Journal >Unexpected BII conformer substate population in unoriented hydrated films of the d(CGCGAATTCGCG)2 dodecamer and of native B-DNA from salmon testes.
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Unexpected BII conformer substate population in unoriented hydrated films of the d(CGCGAATTCGCG)2 dodecamer and of native B-DNA from salmon testes.

机译:d(CGCGAATTCGCG)2十二聚体的未取向水合膜和鲑鱼睾丸中天然B-DNA的意外BII构象子亚群。

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摘要

Conformational substates of B-DNA had been observed so far in synthetic oligonucleotides but not in naturally occurring highly polymeric B-DNA. Our low-temperature experiments show that native B-DNA from salmon testes and the d(CGCGAATTCGCG)2 dodecamer have the same BI and BII substates. Nonequilibrium distribution of conformer population was generated by quenching hydrated unoriented films to 200 K, and isothermal structural relaxation toward equilibrium by interconversion of substates was followed by Fourier transform infrared spectroscopy. BI interconverts into BII on isothermal relaxation at 200 K, whereas on slow cooling from ambient temperature, BII interconverts into BI. Our estimation of the dodecamer's BI-to-BII conformer substate population by curve resolution of the symmetrical stretching vibration of the ionic phosphate is 2.4 +/- 0.5 to 1 at 200 K, and it is 1.3 +/- 0.5 to 1 between 270 and 290 K. Pronounced spectral changes upon BI-to-BII interconversion are consistent with base destacking coupled with migration of water from ionic phosphate toward the phosphodiester and sugar moieties. Nonspecific interaction of proteins with the DNA backbone could become specific by induced-fit-type interactions with either BI or BII backbone conformations. This suggests that the BI-to-BII substate interconversion could be a major contributor to the protein recognition process.
机译:迄今为止,在合成寡核苷酸中观察到了B-DNA的构象亚状态,但在天然存在的高度聚合的B-DNA中未观察到。我们的低温实验表明,鲑鱼睾丸和d(CGCGAATTCGCG)2十二聚体的天然B-DNA具有相同的BI和BII亚状态。通过将水合未取向薄膜淬火至200 K,产生构象异构体的非平衡分布,然后通过傅立叶变换红外光谱分析,通过亚状态的相互转化,使等温结构向平衡状态弛豫。 BI在200 K等温松弛下互转化为BII,而在从环境温度缓慢冷却时,BII互转化为BI。通过离子磷酸盐的对称拉伸振动的曲线解析度,我们对多德卡默的BI-to-BII构象子亚群的估计在200 K时为2.4 +/- 0.5至1,而在270至200之间介于1.3 +/- 0.5至1 290K。从BI到BII相互转换时,明显的光谱变化与碱基拆解以及水从离子磷酸盐向磷酸二酯和糖部分的迁移相一致。蛋白质与DNA骨架的非特异性相互作用可通过与BI或BII骨架构象的诱导拟合型相互作用而变得特异性。这表明BI到BII子状态的相互转换可能是蛋白质识别过程的主要贡献者。

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