首页> 外文期刊>Nucleic Acids Research >Hydration effects of Ni(2+) binding to synthetic polynucleotides with regularly alternating purine-pyrimidine sequences.
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Hydration effects of Ni(2+) binding to synthetic polynucleotides with regularly alternating purine-pyrimidine sequences.

机译:Ni(2+)与合成多核苷酸结合的水合作用具有规则的嘌呤-嘧啶序列。

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High precision ultrasonic and densimetric techniques have been used to study the interaction of Ni(2+)ions with right-handed poly[d(G-C)].poly[d(G-C)], poly-[d(A-C)].poly[d(G-T)] and poly[d(A-T)].poly[d(A-T)] in 5 mM CsCl, 0.2 mM HEPES, pH 7.5 at 20 degrees C. From these measurements the changes in the apparent molar volume and the apparent molar adiabatic compressibility due to the interaction have been obtained. The volume effects of the binding, calculated per mole of Ni(2+)ions, range from 11.7 to 23.9 cm(3)mol(-1)and the compressibility effects range from 19.3 x 10(-4)to 43.1 x 10(-4)cm(3)mol(-1)bar(-1). These data are interpreted in terms of dehydration of the polynucleotides and Ni(2+)ions, i.e. the release of water molecules from the hydration shells of the molecules. An increase in G+C content gives an increase in volume and compressibility effects, indicating a rise in the extent of dehydration. The dehydration effects of Ni(2+)binding to poly[d(G-C)].poly[d(G-C)] are approximately twice those of poly[d(A-T)].poly[d(A-T)]. The volume and compressibility effects of Ni(2+)-EDTA complex formation have also been measured and used as a model system for quantitative estimation. These values revealed that Ni(2+)ions can coordinate two atomic groups of poly[d(G-C)]. poly[d(G-C)], while in the case of the Ni(2+)-poly[d(A-T)]. poly[d(A-T)] complex volume and compressibility effects correspond to one direct or two indirect (through water) contacts.
机译:高精度超声和密度技术已用于研究Ni(2+)离子与右旋poly [d(GC)]。poly [d(GC)],poly- [d(AC)]。poly的相互作用[d(GT)]和poly [d(AT)]。poly [d(AT)]在20摄氏度下于5 mM CsCl,0.2 mM HEPES,pH 7.5中的变化。从这些测量中,表观摩尔体积和由于相互作用,已经获得了明显的摩尔绝热可压缩性。每摩尔Ni(2+)离子计算的结合的体积效应范围为11.7至23.9 cm(3)mol(-1),压缩性效应范围为19.3 x 10(-4)至43.1 x 10( -4)cm(3)mol(-1)bar(-1)。这些数据是根据多核苷酸和Ni(2+)离子的脱水来解释的,即从分子的水合壳中释放水分子。 G + C含量的增加会增加体积和可压缩性,表明脱水程度会增加。 Ni(2+)与poly [d(G-C)]。poly [d(G-C)]结合的脱水作用大约是poly [d(A-T)]。poly [d(A-T)]的脱水作用的两倍。 Ni(2 +)-EDTA配合物形成的体积和可压缩性效应也已被测量,并用作定量估计的模型系统。这些值表明Ni(2+)离子可以配位聚[d(G-C)]的两个原子团。 Ni [2 +]-poly [d(A-T)]的情况。聚[d(A-T)]复合物的体积和可压缩性效应对应于一个直接接触或两个间接(通过水)接触。

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