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逆转录酶介导引物tRNA与病毒基因组的结合。

Reverse transcriptase mediated binding of primer tRNA to the viral genome.

作者信息

Araya A, Sarih L, Litvak S

出版信息

Nucleic Acids Res. 1979 Aug 24;6(12):3831-43. doi: 10.1093/nar/6.12.3831.

Abstract

A complex between tRNATrp (beef) and 35 S RNA from avian myeloblastosis virus is obtained when the mixture is preincubated in the presence of reverse transcriptase at 35 degrees C. The tRNA-RNA complex is active in initiating DNA synthesis catalyzed by reverse transcriptase. The interaction of tRNA with reverse transcriptase involves the partial unwinding of the acceptor stem of tRNA, as evidenced by nuclease digestion with RNAase T1 and micrococcal nuclease. When tRNA2Glu (coli), having a high degree of similarity with primer tRNA at the level of the acceptor stem, was used as primer for DNA synthesis, a low but significant level of incorporation was obtained, if the reaction was performed at 35 degrees C, while a high incorporation, similar to the one obtained with tRNATrp was obtained when the annealing between tRNA2Glu and 35 S RNA was performed at 80 degrees C. Our evidences point out to an important role of the viral DNA polymerase in positioning the primer on the RNA genome.

摘要

当混合物在逆转录酶存在下于35℃预孵育时,可获得来自牛肉的色氨酸转运RNA(tRNATrp)与禽成髓细胞瘤病毒35S RNA的复合物。tRNA-RNA复合物在启动逆转录酶催化的DNA合成中具有活性。tRNA与逆转录酶的相互作用涉及tRNA受体茎的部分解旋,这通过核糖核酸酶T1和微球菌核酸酶的核酸酶消化得以证明。当在受体茎水平与引物tRNA具有高度相似性的谷氨酸转运RNA2(tRNA2Glu,大肠杆菌)用作DNA合成的引物时,如果反应在35℃进行,则可获得低但显著的掺入水平,而当tRNA2Glu与35S RNA之间的退火在80℃进行时,可获得与用tRNATrp获得的相似的高掺入水平。我们的证据表明病毒DNA聚合酶在将引物定位在RNA基因组上起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eba3/327981/557008bc5a2e/nar00453-0126-a.jpg

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