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首页> 外文期刊>Nucleic acids research >SWAP pre-mRNA splicing regulators are a novel, ancient protein family sharing a highly conserved sequence motif with the prp21 family of constitutive splicing proteins
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SWAP pre-mRNA splicing regulators are a novel, ancient protein family sharing a highly conserved sequence motif with the prp21 family of constitutive splicing proteins

机译:SWAP pre-mRNA剪接调节因子是一种新颖的古老蛋白家族,与组成性剪接蛋白的prp21家族共享高度保守的序列基序

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Regulators responsible for the pervasive, nonsexspecific alternative pre-mRNA splicing characteristic of metazoans are almost entirely unknown or uncertain. We describe here a novel family of splicing regulators present throughout metazoans. Specifically, we analyze two nematode (Caenorhabditis elegans) genes. One, CeSWAP, is a cognate of the suppressor-of-whiteapricot (DmSWAP) splicing regulator from the arthropod Drosophila. Our results define the ancient, conserved SWAP protein family whose members share a colinearly arrayed series of novel sequence motifs. Further, we describe evidence that the CeSWAP protein autoregulates its levels by feedback control of splicing of its own pre-mRNA analogously to the DmSWAP protein and as expected of a splicing regulator. The second nematode gene, Ceprp21, encodes an abundant nuclear cognate of the constitutive yeast splicing protein, prp21, on the basis of several lines of evidence. Our analysis defines prp21 as a second novel, ancient protein family. One of the motifs conserved in prp21 proteins–designated surp–is shared with SWAP proteins. Several lines of evidence indicate that both new families of surp-containing proteins act at the same (or very similar) step in early prespliceosome assembly. We discuss implications of our results for regulated metazoan pre-mRNA splicing.
机译:对后生动物普遍存在的,非性别特异性的替代性前mRNA剪接特性负责的调节子几乎是完全未知或不确定的。我们在这里描述了整个后生动物中存在的一个新型的剪接调节子家族。具体来说,我们分析了两个线虫(秀丽隐杆线虫)基因。一个是CeSWAP,是节肢动物果蝇的白抑制子(DmSWAP)剪接调节子的同源物。我们的结果定义了古老的,保守的SWAP蛋白家族,其成员共享一系列共线排列的新颖序列基序。此外,我们描述的证据表明,CeSWAP蛋白通过类似于DmSWAP蛋白并且如预期的剪接调节剂那样,通过对自身mRNA剪接的反馈控制来自动调节其水平。根据多种证据,第二个线虫基因Ceprp21编码组成型酵母剪接蛋白prp21的丰富核同源物。我们的分析将prp21定义为第二个新的古老蛋白质家族。 SWP蛋白与prp21蛋白中保守的基序之一(称为surp)共享。几条证据表明,两个新的含有surp的蛋白质家族在早期剪接体组装过程中的作用相同(或非常相似)。我们讨论了我们的结果对调控后生动物mRNA剪接的影响。

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