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多聚腺苷酸化特异性复合物的电泳分离

Electrophoretic separation of polyadenylation-specific complexes.

作者信息

Skolnik-David H, Moore C L, Sharp P A

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Genes Dev. 1987 Sep;1(7):672-82. doi: 10.1101/gad.1.7.672.

Abstract

A polyadenylation-specific complex composed of precursor RNA containing the adenovirus-2 L3 site and HeLa cellular components was detected by electrophoresis on a native, low-percentage polyacrylamide gel. Upon incubation in a reaction containing ATP and nuclear extract, precursor RNA was rapidly assembled into this complex. This assembly did not require poly(A) synthesis, as it occurred efficiently in the presence of ATP analogs that inhibited this reaction. Mutation of the hexanucleotide AAUAAA 20 nucleotides upstream of the L3 site to AAGAAA or deletion of sequence between +5 and +48 nucleotides downstream of the L3 site inactivates polyadenylation. The specific complex did not effectively from on substrate RNA with either the AAGAAA mutation or the downstream deletion mutation. Kinetic experiments showed that the assembly of this complex preceded processing of precursor RNA. We proposed that formation of this complex represents an intermediate step in polyadenylation.

摘要

通过在天然的低百分比聚丙烯酰胺凝胶上进行电泳,检测到了一种由含有腺病毒2型L3位点的前体RNA和HeLa细胞成分组成的聚腺苷酸化特异性复合物。在含有ATP和核提取物的反应中孵育后,前体RNA迅速组装成该复合物。这种组装不需要聚腺苷酸合成,因为它在抑制该反应的ATP类似物存在下能高效发生。L3位点上游20个核苷酸处的六核苷酸AAUAAA突变为AAGAAA,或L3位点下游+5至+48个核苷酸之间的序列缺失会使聚腺苷酸化失活。具有AAGAAA突变或下游缺失突变的底物RNA都不能有效地形成特异性复合物。动力学实验表明,该复合物的组装先于前体RNA的加工。我们推测,该复合物的形成代表了聚腺苷酸化过程中的一个中间步骤。

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