Andersen J, Delihas N, Hanas J S, Wu C W
Biochemistry. 1984 Nov 20;23(24):5759-66. doi: 10.1021/bi00319a014.
The 5S RNA complexed in the 7S particle of immature Xenopus laevis oocytes was 32P labeled at its 3' end and then subjected in situ to partial digestion using ribonucleases T1, T2, A, and V1 in order to study the conformation of the complexed RNA and its interaction with the transcription factor A (TFIIIA). Digested samples were gel purified to retrieve 5S RNA that was still complexed with the transcription factor protein, and the cleavages in these RNAs were analyzed on sequencing gels. The RNA associated with the 7S particle is very susceptible to ribonuclease activity despite the presence of the protein. Also, the 5S RNA in the 7S particle is in a different conformation from renatured Xenopus laevis (Xlo) 5S RNA and appears to have less secondary structure predominantly in the stem that includes helices IV and V. A species of native Xlo 5S RNA which was isolated from 7S particle preparations under nondenaturing conditions revealed a conformation that was more similar to the 5S RNA in the 7S particle than to renatured 5S RNA. Comparison of data from partial ribonuclease digestions performed on renatured 5S RNA, on the native 5S RNA, and on the complexed 5S RNA allowed us to approximate sites of protein-induced structural change in the complexed 5S RNA, which may signal protein interaction domains. These sites include the 5' side of helices III and V. In another approach to the study of 5S RNA-TFIIIA interactions, we have observed that incubation of 32P-labeled Xlo 5S RNA with 7S particles results in the incorporation of labeled RNA into 7S particles.(ABSTRACT TRUNCATED AT 250 WORDS)
在未成熟的非洲爪蟾卵母细胞的7S颗粒中复合的5S RNA在其3'端用32P标记,然后原位用核糖核酸酶T1、T2、A和V1进行部分消化,以研究复合RNA的构象及其与转录因子A(TFIIIA)的相互作用。消化后的样品经凝胶纯化以回收仍与转录因子蛋白复合的5S RNA,并在测序凝胶上分析这些RNA中的切割情况。尽管存在蛋白质,但与7S颗粒相关的RNA对核糖核酸酶活性非常敏感。此外,7S颗粒中的5S RNA与复性的非洲爪蟾(Xlo)5S RNA具有不同的构象,并且似乎在包括螺旋IV和V的茎中主要具有较少的二级结构。在非变性条件下从7S颗粒制剂中分离出的一种天然Xlo 5S RNA显示出一种构象,该构象与7S颗粒中的5S RNA比与复性的5S RNA更相似。对在复性5S RNA、天然5S RNA和复合5S RNA上进行的部分核糖核酸酶消化数据的比较使我们能够近似复合5S RNA中蛋白质诱导的结构变化位点,这可能标志着蛋白质相互作用结构域。这些位点包括螺旋III和V的5'侧。在研究5S RNA-TFIIIA相互作用的另一种方法中,我们观察到用32P标记的Xlo 5S RNA与7S颗粒一起温育会导致标记的RNA掺入7S颗粒中。(摘要截短于250字)