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SR protein and snRNP requirements for assembly of the Rous sarcoma virus negative regulator of splicing complex in vitro.

机译:劳斯肉瘤病毒阴性复合体体外调节组装中的SR蛋白和snRNP要求。

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摘要

Retroviruses use unspliced RNA as mRNA for expression of virion structural proteins and as genomic RNA; the full-length RNA often constitutes the majority of the viral RNA in an infected cell. Maintenance of this large pool of unspliced RNA is crucial since even a modest increase in splicing efficiency can lead to impaired replication. In Rous sarcoma virus, the negative regulator of splicing (NRS) was identified as a cis element that negatively impacts splicing of viral RNA. Components of the splicing apparatus appear to be involved in splicing inhibition since binding of a number of splicing factors (snRNPs and SR proteins) and assembly of a large complex (NRS-C) in nuclear extracts correlate with NRS-mediated splicing inhibition. In determining the requirements for NRS complex assembly, we show that NRS-C assembly can be reconstituted by addition of total SR proteins to an S100 extract that lacks these factors. Of the purified SR proteins tested, SF2/ASF was functional in NRS-C assembly, whereas SC35 and SRp40 were not. The participation of snRNPs in NRS-C assembly was addressed by selectively depleting individual snRNPs with oligonucleotides and RNase H or by sequestering critical snRNA domains with 2'-O-methyl RNA oligonucleotides. The results indicate that in addition to U11 snRNP, U1 snRNP and SR proteins, but not U2 snRNP, are involved in NRS-C assembly.
机译:逆转录病毒使用未剪接的RNA作为表达病毒粒子结构蛋白的mRNA和作为基因组RNA。全长RNA通常构成被感染细胞中病毒RNA的大部分。维持大量未剪接的RNA至关重要,因为即使剪接效率的适度提高也会导致复制受损。在劳斯肉瘤病毒中,剪接的负调控因子(NRS)被确定为对病毒RNA剪接产生负面影响的顺式元件。由于许多剪接因子(snRNPs和SR蛋白)的结合以及核提取物中大复合物(NRS-C)的组装与NRS介导的剪接抑制相关,所以剪接设备的组件似乎参与了剪接抑制。在确定NRS复杂装配的要求时,我们表明可以通过向缺少这些因素的S100提取物中添加总SR蛋白来重构NRS-C装配。在测试的纯化SR蛋白中,SF2 / ASF在NRS-C装配中起作用,而SC35和SRp40没有。 snRNPs在NRS-C装配中的参与通过使用寡核苷酸和RNase H选择性地消耗单个snRNPs或通过2'-O-甲基RNA寡核苷酸隔离关键的snRNA结构域来解决。结果表明,除了U11 snRNP之外,U1 snRNP和SR蛋白(而不是U2 snRNP)也参与NRS-C组装。

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