Prabahar K J, Ferris J P
Department of Chemistry, Rensselaer Polytechnic Institute, Troy, New York 12180-3590, USA.
Orig Life Evol Biosph. 1997 Dec;27(5-6):513-23. doi: 10.1023/a:1006540306353.
The oligomerization of adenosine 5'-phosphoro-4-(dimethylamino)pyridinium (4-(CH3)2-NpypA) and diadenosine 5',5'-pyrophosphate (A5'ppA) (9:1) on Na(+)-montmorillonite was studied. The oligomers were isolated and analyzed by selective enzymatic hydrolyses and the oligomeric composition and the percent of 3',5'-phosphodiester linkages present in each fraction was determined. The longest oligomers formed (11-mers) are slightly shorter than those produced in the absence of A5'ppA (12-mers). Smaller amounts of A5'ppA are incorporated into the oligomers than in the ImpA/A5'ppA reaction. The regioselectivity of 3',5'-phosphodiester bond formation is comparable to that of the oligomerization of 4-(CH3)2NpypA alone. An explanation of these data is proposed and the possible effect of dinucleoside pyrophosphate on prebiotic RNA formation is discussed.
研究了5'-磷酸-4-(二甲氨基)吡啶鎓腺苷(4-(CH3)2-NpypA)与5',5'-二磷酸腺苷(A5'ppA)(9:1)在钠蒙脱石上的低聚反应。通过选择性酶水解分离并分析了低聚物,确定了各馏分中的低聚体组成以及3',5'-磷酸二酯键的百分比。形成的最长低聚物(11聚体)比无A5'ppA时产生的低聚物(12聚体)略短。与ImpA/A5'ppA反应相比,掺入低聚物中的A5'ppA量较少。3',5'-磷酸二酯键形成的区域选择性与单独的4-(CH3)2NpypA低聚反应相当。提出了对这些数据的解释,并讨论了二核苷焦磷酸对益生元RNA形成的可能影响。