Amarnath V, Broom A D
Biochim Biophys Acta. 1977 Nov 2;479(1):16-23. doi: 10.1016/0005-2787(77)90121-6.
The synthesis of 1-methyl-6-thioguanosine 5'-diphosphate and its conversion to poly(1-methyl-6-thioguanylic acid) by means of polynucleotide phosphorylase are described. The polymer exhibited cooperative behavior (Tm = 294 K in the absence of added NaCl) characteristic of a highly stacked single-stranded helical array. In a high salt environment (0.5 M NaCl) the melting was much less cooperative and gave a higher Tm (313 K); this is suggestive of interstrand aggregation involving hydrogen bonding. The polynucleotide exhibited a remarkably high pKa (6.2) compared to that of the mononucleotide (2.6), and formed a very stable acid structure (Tm = 356 K in 50% ethylene glycol). Comparisons with poly(1-methyl-6-thioinosinic acid) and poly(6-thioguanylic acid) establish that both the 2-amino group and the 1-methyl group are required for the formation of the stable acid structure.
描述了1-甲基-6-硫代鸟苷5'-二磷酸的合成及其通过多核苷酸磷酸化酶转化为聚(1-甲基-6-硫代鸟苷酸)的过程。该聚合物表现出协同行为(在不添加NaCl的情况下,Tm = 294 K),这是高度堆积的单链螺旋阵列的特征。在高盐环境(0.5 M NaCl)中,解链的协同性要低得多,并且具有更高的Tm(313 K);这表明涉及氢键的链间聚集。与单核苷酸(2.6)相比,该多核苷酸表现出非常高的pKa(6.2),并形成了非常稳定的酸结构(在50%乙二醇中,Tm = 356 K)。与聚(1-甲基-6-硫代肌苷酸)和聚(6-硫代鸟苷酸)的比较表明,稳定酸结构的形成需要2-氨基基团和1-甲基基团。