England T E, Uhlenbeck O C
Biochemistry. 1978 May 30;17(11):2069-76. doi: 10.1021/bi00604a008.
The substrate specificity of T4 RNA ligase has been examined to determine whether the intermolecular reaction is sufficiently general to realize its potential in the enzymatic synthesis of oligoribonucleotides of defined sequence. Reactions between a variety of acceptor molecules with 3'- and 5'-bydroxyl groups and donor molecules with 3'- and 5'-phosphates indicate that the minimal substrates are a trinucleoside diphosphate acceptor and a nucleoside 3',5'-bisphosphate donor. Increasing the chain length of either the acceptor or donnor has little effect on the rate or extent of reaction. Although the base composition of the donor has only a small effect on the reaction rate, the presence of uridine in the acceptor greatly reduces the amount of product formed. The presence of a phosphate on the 3' terminus of the donor molecule permits a unique intermolecular product with a 5'-hydroxyl and a 3'-phosphate. By enzymatically either adding a 5'-phosphate or removing the 3'-phosphate, a new donor or acceptor is prepared so synthesis of an oligomer chain can proceed in either direction. With the simplicity of this enzymatic pathway and the rather broad substrate specificity of T4 RNA ligase, a convenient method for the synthesis of oligoribonucleotides is established.
已对T4 RNA连接酶的底物特异性进行了研究,以确定分子间反应是否具有足够的通用性,从而在酶促合成特定序列的寡核糖核苷酸中发挥其潜力。各种具有3'-和5'-羟基的受体分子与具有3'-和5'-磷酸的供体分子之间的反应表明,最小的底物是三核苷二磷酸受体和核苷3',5'-二磷酸供体。增加受体或供体的链长对反应速率或反应程度影响很小。虽然供体的碱基组成对反应速率只有很小的影响,但受体中尿苷的存在会大大减少产物的生成量。供体分子3'末端存在磷酸基团允许形成具有5'-羟基和3'-磷酸的独特分子间产物。通过酶促添加5'-磷酸或去除3'-磷酸,可以制备新的供体或受体,从而使寡聚体链的合成可以向任一方向进行。凭借这种酶促途径的简单性以及T4 RNA连接酶相当广泛的底物特异性,建立了一种方便的寡核糖核苷酸合成方法。