Bringmann P, Appel B, Rinke J, Reuter R, Theissen H, Lührmann R
EMBO J. 1984 Jun;3(6):1357-63. doi: 10.1002/j.1460-2075.1984.tb01977.x.
Small nuclear ribonucleoprotein particles (snRNPs) from eucaryotic cells can be fractionated on affinity columns prepared with antibodies of high affinity for 2,2,7-trimethyl-guanosine (m3G), which is present in the 5'-terminal caps of the snRNAs. While the snRNPs U1, U2 and U5 are eluted with the nucleoside m3G in the presence of 0.1 M salt, the snRNP species U4 and U6 are only desorbed when the salt concentration is increased. The same fractionation pattern was likewise observed for snRNPs from HeLa or Ehrlich ascites tumor cells. Since U6 RNA lacks the m3G residue and its RNA does not react with anti-m3G, its co-chromatography with U4 RNP on anti-m3G affinity columns suggests either that discrete snRNPs U4 and U6 are intimately associated in nuclear extracts or that both RNAs are organized in one ribonucleoprotein particle. Further evidence for a U4/U6 RNP particle is obtained by sedimentation studies with purified snRNPs in sucrose gradients. Gel fractionation of RNAs shows identical distributions of snRNAs U4 and U6 in the gradient, and the U4/U6 RNP particle sediments faster than the snRNPs U1 or U2. Physical association between snRNPs U4 and U6 during sedimentation is shown by their co-precipitation with anti-m3G IgG from the gradient fractions. Finally, experimental evidence is provided that snRNAs U4 and U6 are associated by intermolecular base pairing in the U4/U6 RNP particle, as demonstrated by our finding that anti-m3G IgG co-precipitates U6 RNA with U4 RNA following phenolization of U4/U6 RNPs at 0 degrees C.(ABSTRACT TRUNCATED AT 250 WORDS)
真核细胞中的小核核糖核蛋白颗粒(snRNP)可以在由对2,2,7-三甲基鸟苷(m3G)具有高亲和力的抗体制备的亲和柱上进行分离,m3G存在于snRNA的5'-末端帽中。当在0.1M盐存在下用核苷m3G洗脱snRNP U1、U2和U5时,snRNP种类U4和U6仅在盐浓度增加时才被解吸。从HeLa或艾氏腹水瘤细胞中提取的snRNP也观察到相同的分离模式。由于U6 RNA缺乏m3G残基且其RNA不与抗m3G反应,其在抗m3G亲和柱上与U4 RNP的共色谱表明,要么离散的snRNP U4和U6在核提取物中紧密相关,要么两种RNA都组织在一个核糖核蛋白颗粒中。通过在蔗糖梯度中对纯化的snRNP进行沉降研究,获得了U4/U6 RNP颗粒的进一步证据。RNA的凝胶分级分离显示梯度中snRNA U4和U6的分布相同,并且U4/U6 RNP颗粒的沉降速度比snRNP U1或U2快。snRNP U4和U6在沉降过程中的物理关联通过它们与来自梯度级分的抗m3G IgG的共沉淀来显示。最后,提供了实验证据表明snRNA U4和U6在U4/U6 RNP颗粒中通过分子间碱基配对相互关联,正如我们发现在0℃对U4/U6 RNP进行酚化后,抗m3G IgG使U6 RNA与U4 RNA共沉淀所证明的那样。(摘要截断于250字)