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20S small nuclear ribonucleoprotein U5 shows a surprisingly complex protein composition.

机译:20S小核糖核蛋白U5显示出令人惊讶的复杂蛋白质组成。

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摘要

U5 small nuclear ribonucleoprotein (snRNP), purified from HeLa nuclear extracts (splicing extracts), shows a complex protein composition. In addition to the snRNP proteins B', B, D, D', E, F, and G, which are present in each of the major snRNPs U1, U2, U4/U6, and U5, U5 snRNP contains a number of unique proteins characterized by apparent molecular masses of 40, 52, 100, 102, 116, and 200 (mostly a double band) kDa. The latter set of proteins may be regarded as U5-specific for the following reasons. They are not only eluted specifically, together with snRNP particles, from anti-2,2,7-trimethylguanosine immunoaffinity columns by 7-methylguanosine, they also cofractionate with U5 snRNP during chromatography and, most importantly, in glycerol gradient centrifugation. These U5 snRNP particles show a high sedimentation constant of about 20S. U5 snRNPs that lack the U5-specific proteins are also found in nuclear extracts but have (in comparison) a lower sedimentation value of only 8-10S. Autoimmune sera from patients with systemic lupus erythematosus were identified that, on immunoblots with purified U5 snRNP proteins, reacted selectively with the 100- or 200-kDa proteins. This indicates that at least the high molecular mass U5-specific proteins are structurally distinct and not derived one from the other by proteolytic degradation. The existence of so many unique proteins in the U5 snRNP suggests that this snRNP particle may exert its function during splicing mainly by virtue of its protein components.
机译:从HeLa核提取物(剪接提取物)纯化得到的U5小核糖核蛋白(snRNP)显示出复杂的蛋白质组成。除了存在于每个主要snRNP U1,U2,U4 / U6和U5中的snRNP蛋白B',B,D,D',E,F和G外,U5 snRNP还包含许多独特的蛋白的特征在于表观分子量为40、52、100、102、116和200(主要是双谱带)kDa。由于以下原因,后一组蛋白质可被视为U5特异性的。它们不仅与snRNP颗粒一起被7-甲基鸟苷从抗2,2,7-三甲基鸟苷免疫亲和柱中特异性洗脱,而且在色谱分离中,最重要的是在甘油梯度离心中,与U5 snRNP共分离。这些U5 snRNP颗粒显示出约20S的高沉降常数。在核提取物中也发现了缺乏U5特异性蛋白的U5 snRNPs,但(相比)其沉淀值较低,仅为8-10S。鉴定出患有系统性红斑狼疮患者的自身免疫血清,在纯化的U5 snRNP蛋白的免疫印迹上,其与100-或200-kDa蛋白选择性反应。这表明至少高分子量的U5特异性蛋白在结构上是不同的,并且不是通过蛋白水解降解而彼此衍生的。 U5 snRNP中存在如此众多独特的蛋白质,这表明该snRNP颗粒可能主要是由于其蛋白质成分而在剪接过程中发挥其功能。

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