首页> 美国卫生研究院文献>Nucleic Acids Research >The snRNP core protein SmB and tissue-specific SmN protein are differentially distributed between snRNP particles.
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The snRNP core protein SmB and tissue-specific SmN protein are differentially distributed between snRNP particles.

机译:snRNP核心蛋白SmB和组织特异性SmN蛋白在snRNP颗粒之间差异分布。

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摘要

The SmN protein is a tissue specific component of the small nuclear ribonucleoprotein particle which is closely related to the ubiquitously expressed SmB protein but is expressed only in the brain and heart. To investigate the function of SmN, its localisation within different snRNP particles was investigated using a range of anti-snRNP monoclonal antibodies. SmN and SmB were found to exhibit different patterns of association with snRNP particles in two cell lines, ND7 and F9 which express SmN. In both cases, SmN was found to be present in the U-2 snRNP but was excluded from the U-1 snRNPs whereas SmB was present in both U-1 and U-2 snRNPs. Data from transfected 3T3 mouse fibroblasts cell lines artificially expressing a low level of SmN also confirm this observation. In contrast, SmN was found to be an integral component of both the U-1 and U-2 snRNPs in both 3T3 cells artificially expressing high levels of SmN and in adult rat brain which has a naturally high level of SmN expression. Taken together, the results suggest that the pre-U1 snRNP particle has a lower affinity for SmN than for SmB. Thus, SmN expressed at low levels incorporates into U2, but SmN expressed at high levels incorporates into both U1 and U2 snRNPs and replaces SmB. The significance of these effects is discussed in terms of the potential role played by SmN in constitutive and alternative splicing pathways in neuronal cells.
机译:SmN蛋白是核小核糖核蛋白小颗粒的组织特异性成分,与普遍表达的SmB蛋白密切相关,但仅在脑和心脏中表达。为了研究SmN的功能,使用一系列抗snRNP单克隆抗体研究了其在不同snRNP颗粒中的定位。发现在两个表达SmN的细胞系ND7和F9中,SmN和SmB表现出与snRNP颗粒缔合的不同模式。在这两种情况下,SmN被发现存在于U-2 snRNP中,但被排除在U-1 snRNP中,而SmB存在于U-1和U-2 snRNP中。来自人工表达低水平SmN的转染3T3小鼠成纤维细胞细胞系的数据也证实了这一观察结果。相反,在人工表达高水平SmN的3T3细胞和自然具有高水平SmN表达的成年大鼠脑中,发现SmN是U-1和U-2 snRNP的组成部分。两者合计,结果表明前U1 snRNP粒子对SmN的亲和力低于对SmB的亲和力。因此,以低水平表达的SmN并入U2,但以高水平表达的SmN并入U1和U2 snRNPs并替代SmB。根据SmN在神经元细胞的本构和替代剪接途径中发挥的潜在作用,讨论了这些作用的重要性。

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