B.I. Verkin Institute for Low Temperature Physics and Engineering, National Academy of Sciences of Ukraine, 47 Lenin Avenue, Kharkov 61103, Ukraine.
Int J Biol Macromol. 2013 Oct;61:448-52. doi: 10.1016/j.ijbiomac.2013.08.010. Epub 2013 Aug 21.
Effect of Zn(2+) ions on the conformation of polyA in cacodilic buffer at pH 7 was investigated by differential UV spectroscopy (DUV) and by thermal denaturation. The shapes of the DUV spectra and melting curves suggest a transition of polyA into a more ordered "metallized", possibly double-helical conformation at Zn(2+) concentrations above 3×10(-5) M. A phase diagram of polyA complexes with Zn(2+) was constructed for the temperature range from 20 °C to 95 °C and Zn(2+) concentrations between 10(-5) M and 5×10(-4) M. It was found that the transition of a single strand into the "metallized" form is possible only if the length of the disordered single-stranded region becomes larger than a certain critical value, ranging between 98% and 78% as the metal concentration increases from 3×10(-5) to 5×10(-4) M.
采用差示紫外光谱法(DUV)和热变性法研究了 Zn(2+) 离子对 pH 值为 7 的 cacodilic 缓冲液中聚 A 构象的影响。DUV 光谱和熔解曲线的形状表明,在 Zn(2+) 浓度高于 3×10(-5) M 时,聚 A 会转变为更有序的“金属化”,可能是双链构象。在 20°C 至 95°C 的温度范围内和 10(-5) M 至 5×10(-4) M 的 Zn(2+) 浓度下,构建了聚 A 与 Zn(2+) 的配合物相图。结果发现,只有当无序单链区的长度大于某个临界值时,单链才能转变为“金属化”形式,该临界值随金属浓度从 3×10(-5) 增加到 5×10(-4) M 而在 98%和 78%之间变化。