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The complexity of 75S premessenger RNA in balbiani ring granules studied by a new RNA band retardation assay.

机译:通过新的RNA谱带阻滞测定法研究了balbiani环颗粒中75S信使RNA的复杂性。

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摘要

Under normal growth conditions, Balbiani ring granules constitute premessenger ribonucleoprotein (RNP) particles synthesized in two chromosomal puffs, Balbiani ring (BR) 1 and 2, in the larval salivary glands of Chironomus tentans. At least three genes encoding 75S RNA are present in these two BRs: one in BR1 and two in BR2 (BR2.1 and BR2.2). The complexity of BR granule 75S RNA was studied by agarose gel electrophoresis under non-denaturing conditions. We recorded three main bands, designated I, II and III. Experiments with denaturing gels demonstrated that the differences in migration reflected mainly, but not exclusively, conformational differences. Northern blotting experiments showed that band I contained BR1 sequences, band II contained BR2.1 sequences, and band III contained BR2.2 sequences. To study whether additional genes contributed to the BR granule 75S RNA, an RNA band shift assay was developed. When an oligodeoxyribonucleotide complementary to repetitive BR1 and BR2.2 sequences was hybridized to 75S RNA prior to electrophoresis, bands I and III were retarded but not band II. An oligonucleotide complementary to a repetitive BR2.1 sequence only shifted band II. Since no detectable 75S RNA remained unchanged in these experiments, and all bands were identified by Northern blotting, all the BR granules are likely to originate from the BR1, BR2.1 and BR2.2 genes; no additional genes have to be invoked. Possible applications of the new RNA band shift assay are discussed.
机译:在正常的生长条件下,Balbiani环颗粒构成了在Chironomus tentan幼虫唾液腺中的两个染色体泡芙Balbali环(BR)1和2中合成的前信使核糖核蛋白(RNP)颗粒。在这两个BR中至少存在三个编码75S RNA的基因:一个在BR1中,两个在BR2中(BR2.1和BR2.2)。在非变性条件下,通过琼脂糖凝胶电泳研究了BR颗粒75S RNA的复杂性。我们录制了三个主要乐队,分别为I,II和III。变性凝胶的实验表明,迁移差异主要反映但不仅仅反映构象差异。 Northern印迹实验表明,条带I包含BR1序列,条带II包含BR2.1序列,条带III包含BR2.2序列。为了研究其他基因是否对BR颗粒75S RNA有所贡献,开发了一种RNA带移分析。当在电泳之前将与重复的BR1和BR2.2序列互补的寡脱氧核糖核苷酸与75S RNA杂交时,I和III谱带被阻滞,但II谱带没有被阻滞。与重复的BR2.1序列互补的寡核苷酸仅使带II移位。由于在这些实验中没有可检测到的75S RNA保持不变,并且通过Northern印迹法鉴定了所有条带,因此所有BR颗粒均可能源自BR1,BR2.1和BR2.2基因。无需调用其他基因。讨论了新的RNA带移分析的可能应用。

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