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首页> 外文期刊>The biochemical journal >The second RNA-binding domain of the human splicing factor ASF/SF2 is the critical domain controlling adenovirus E1A alternative 5′-splice site selection
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The second RNA-binding domain of the human splicing factor ASF/SF2 is the critical domain controlling adenovirus E1A alternative 5′-splice site selection

机译:人类剪接因子ASF / SF2的第二个RNA结合域是控制腺病毒E1A替代5'-剪接位点选择的关键域

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pThe human splicing factor ASF/SF2 (alternative splicing factor/splicing factor 2) is modular in structure with two RNA-binding domains (RBD1 and RBD2) and a C-terminal domain rich in arginine–serine dipeptide repeats. ASF/SF2 is an essential splicing factor that also functions as an important regulator of alternative splicing. In adenovirus E1A (early region 1A) alternative pre-mRNA splicing, ASF/SF2 functions as a strong inducer of proximal 5′-splice-site selection, both iin vitro/i and iin vivo/i. In the present study, we tested the functional role of individual domains of ASF/SF2 in alternative splicing iin vitro/i. We show that ASF/SF2-RBD2 is the critical domain controlling E1A alternative splicing. In fact, RBD2 alone is sufficient to mimic the activity of the full-length ASF/SF2 protein as an inducer of proximal 5′-splice-site selection iin vitro/i. The RBD2 domain induces a switch to E1A-proximal 5′-splice-site usage by repressing distal 12 S splicing and simultaneously stimulates proximal 13 S splicing. In contrast, the ASF/SF2-RBD1 domain has a more general splicing enhancer phenotype and appears to stimulate preferentially cap-proximal 5′-splice-site selection. Furthermore, the SWQDLKD motif, which is conserved in all SR proteins (serine/arginine-rich proteins) containing two RBDs, and the ribonucleoprotein-1-type RNA recognition motif were both found to be necessary for the alternative splice-site-switching activity of ASF/SF2. The RNP-1 motif was necessary for efficient RNA binding, whereas the SWQDLKD motif most probably contributes by functioning as a surface-mediating critical protein–protein contact during spliceosome assembly./p
机译:>人类剪接因子ASF / SF2(替代剪接因子/剪接因子2)在结构上具有模块化,具有两个RNA结合结构域(RBD1和RBD2)和一个富含精氨酸-丝氨酸二肽重复序列的C末端结构域。 ASF / SF2是必不可少的剪接因子,它也可作为替代剪接的重要调节剂。在腺病毒E1A(早期1A区域)的替代性mRNA剪接中,ASF / SF2在体外和体外均是强大的5'-剪接位点近端选择的诱导剂。我>。在本研究中,我们测试了ASF / SF2单个域在体外剪接中的功能性作用。我们显示ASF / SF2-RBD2是控制E1A替代剪接的关键域。实际上,单独的RBD2足以模拟全长ASF / SF2蛋白作为体外5'-剪接位点选择诱导剂的活性。 RBD2结构域通过抑制远端12S剪接并同时刺激近端13S剪接而诱导向E1A近端5'-剪接位点的使用。相比之下,ASF / SF2-RBD1结构域具有更一般的剪接增强子表型,并且似乎优先刺激接近帽的5'-剪接位点选择。此外,发现在包含两个RBD的所有SR蛋白(富含丝氨酸/精氨酸的蛋白)中都保守的SWQDLKD基序和核糖核蛋白-1型RNA识别基序对于选择性的剪接位点切换活性都是必需的ASF / SF2。 RNP-1基序对于有效的RNA结合是必需的,而SWQDLKD基序很可能是通过在剪接体组装过程中充当表面介导的关键蛋白之间的接触而起作用的。

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