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SOLID-PHASE SYNTHESIS OF OLIGORIBONUCLEOTIDES USING T4 RNA LIGASE AND T4 POLYNUCLEOTIDE KINASE

机译:T4 RNA连接酶和T4核苷酸激酶的固相合成寡核糖核苷酸

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The concept of solid-phase synthesis of oligoribonucleotides using T4 RNA ligase and T4 polynucleotide kinase has been proposed and tested with model homo-oligoribonucleotides. The method consists of the immobilization of the first oligomer black at the 3'-terminus on a solid support followed by a chain elongation in the 5'-direction with trinucleoside diphosphates using T4 RNA-ligase and phosphorylation using polynucleotide kinase. Hydrazides of Biogel P-300, Sepharose 4B and cellulose were tested as solid supports for immobilization of initial oligomers. The properties of supports were rated on reactivities of immobilized 5'-phosphorylated oligomers as phosphate donors in the solid phase reactions, hydrodynamical properties and capacity to: eliminate donor molecules spontaneously during reactions. Hydrazide of Sepharose 4B appeared to be a more suitable support because of better hydrodynamic properties and highest reactivities of immobilized donors. Saturated concentrations of RNA ligase and polynucleotide kinase and optimal time of joining reaction were determined. In a model experiment ApApA was twice attached to the immobilized hydrazide of Sepharose 4B donor (pA)(6)pA(OX). The yield of(Ap)(12) was 25%. [References: 20]
机译:已经提出了使用T4 RNA连接酶和T4多核苷酸激酶固相合成寡核糖核苷酸的概念,并用模型同型寡核糖核苷酸进行了测试。该方法包括将第一寡聚物黑色在3'末端固定在固相支持物上,然后使用T4 RNA连接酶用三核苷二磷酸在5'方向上进行链延伸,并使用多核苷酸激酶进行磷酸化。测试了Biogel P-300的酰肼,Sepharose 4B和纤维素作为固定化初始低聚物的固体载体。根据固相反应中作为磷酸盐供体的固定化5'-磷酸化低聚物的反应性,流体力学性质和以下能力:对反应过程中自发消除供体分子的能力进行了评估。 Sepharose 4B的酰肼似乎是更合适的载体,因为它具有更好的流体动力学特性和固定化供体的最高反应活性。确定了RNA连接酶和多核苷酸激酶的饱和浓度以及最佳的连接反应时间。在模型实验中,ApApA两次连接到Sepharose 4B供体(pA)(6)pA(OX)的固定酰肼上。 (Ap)(12)的产率为25%。 [参考:20]

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