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T4核糖核酸连接酶连接单链寡(脱氧核糖核苷酸)。

T4 ribonucleic acid ligase joins single-strand oligo(deoxyribonucleotides).

作者信息

McCoy M I, Gumport R I

出版信息

Biochemistry. 1980 Feb 19;19(4):635-42. doi: 10.1021/bi00545a005.

Abstract

T4 RNA ligase joins a 3'-hydroxyl-terminated acceptor oligoribonucleotide to a 5'-phosphate-terminated donor oligoribonucleotide. An analogous reaction with single-strand DNA oligonucleotides would be useful for the synthesis of defined sequences of DNA because it would eliminate the need to synthesize complementary sequences to form the duplex substrates required by DNA ligase. We have studied the model reaction dA(pdA)5 + [5'-32P] (pdT)4pdCp leads to dA(pdA)5 [3' leads to 5'-32P]pdT(pdT)3pdCp and have obtained 40-60% yields at equimolar concentrations (100 microM to 1 mM) of the two substrates. Higher yields have been obtained when acceptor concentrations in excess of those of the donor are used. The use of a 5'-hydroxyl, 3'-hydroxyl terminated acceptor and a 5'-phosphate, 3'-phosphate terminated donor limits the reaction to a unique product. The 3'-phosphate-terminated donor was prepared by using RNA ligase to add a single deoxyribonucleoside 3',5'-bisphosphate donor to an oligo(deoxyribonucleotide) acceptor [Hinton, D.M., Baez, J.A., & Gumport, R.I. (1978) Biochemistry 17, 5091]. The DNA oligomer joining reaction requires low concentrations of ATP and an ATP regenerating system, Mn2+, high levels of nuclease-free RNA ligase (30 microM), and incubation for several days at 17 degrees C. The product of the reaction was characterized by its resistance to alkaline phosphatase, degradation by micrococcal nuclease to the expected product [3'-32P]dAMP, and mobility during high-pressure liquid chromatography on RPC-5. The joining of several other deoxyoligomers was also demonstrated. We anticipate that this reaction of RNA ligase will contribute to its usefulness as a reagent for the synthesis of DNA of defined sequence.

摘要

T4 RNA连接酶可将3'-羟基末端的受体寡核糖核苷酸与5'-磷酸末端的供体寡核糖核苷酸连接起来。对于单链DNA寡核苷酸而言,类似的反应对于合成特定的DNA序列将是有用的,因为这样就无需合成互补序列来形成DNA连接酶所需的双链底物。我们研究了模型反应dA(pdA)5 + 5'-32P4pdCp生成dA(pdA)5 [3'→5'-32P]pdT(pdT)3pdCp,在两种底物等摩尔浓度(100微摩尔至1毫摩尔)下获得了40%至60%的产率。当使用过量受体浓度高于供体浓度时,可获得更高的产率。使用5'-羟基、3'-羟基末端的受体和5'-磷酸、3'-磷酸末端的供体可使反应局限于唯一产物。3'-磷酸末端的供体是通过使用RNA连接酶将单个脱氧核糖核苷3',5'-双磷酸供体添加到寡(脱氧核糖核苷酸)受体上制备的[辛顿,D.M.,贝兹,J.A.,& 冈波特,R.I.(1978年)《生物化学》17,5091]。DNA寡聚物连接反应需要低浓度的ATP和ATP再生系统、Mn2+、高浓度的无核酸酶RNA连接酶(30微摩尔),并在17℃下孵育数天。反应产物的特征在于其对碱性磷酸酶的抗性、被微球菌核酸酶降解为预期产物[3'-32P]dAMP以及在RPC - 5上进行高压液相色谱时的迁移率。还证明了其他几种脱氧寡聚物的连接。我们预计RNA连接酶的这种反应将有助于其作为合成特定序列DNA的试剂的实用性。

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