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Frame-disrupting mutations elicit pre-mRNA accumulation independently of frame disruption

机译:破坏框架的突变引起独立于框架破坏的前mRNA积累

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摘要

The T-cell receptor (TCR) and immunoglobulin (Ig) genes are unique among vertebrate genes in that they undergo programmed rearrangement, a process that allows them to generate an enormous array of receptors with different antigen specificities. While crucial for immune function, this rearrangement mechanism is highly error prone, often generating frameshift or nonsense mutations that render the rearranged TCR and Ig genes defective. Such frame-disrupting mutations have been reported to increase the level of TCRβ and Ig>µ pre-mRNA, suggesting the hypothesis that RNA processing is blocked when frame disruption is sensed. Using a chimeric gene that contains TCRβ sequences conferring this upregulatory response, we provide evidence that pre-mRNA upregulation is neither frame- nor translation-dependent; instead, several lines of evidence suggested that it is the result of disrupted cis elements necessary for efficient RNA splicing. In particular, we identify the rearranging VDJβ exon as being uniquely densely packed with exonic-splicing enhancers (ESEs), rendering this exon hypersensitive to mutational disruption. As the chimeric gene that we developed for these studies generates unusually stable nuclear pre-mRNAs that accumulate when challenged with ESE mutations, we suggest it can be used as a sensitive in vivo system to identify and characterize ESEs.
机译:T细胞受体(TCR)和免疫球蛋白(Ig)基因在脊椎动物基因中是独特的,因为它们会经历程序化的重排,这一过程使它们能够生成大量具有不同抗原特异性的受体。尽管对免疫功能至关重要,但这种重排机制很容易出错,通常会产生移码或无义突变,从而使重排的TCR和Ig基因出现缺陷。据报道,这种破坏框架的突变会增加TCRβ和Ig > µ 前mRNA的水平,这表明假说在检测到破坏框架时RNA加工被阻断。使用包含赋予该上调应答的TCRβ序列的嵌合基因,我们提供了证据,表明前mRNA上调既不依赖框架,也不依赖翻译。取而代之的是,一些证据表明,这是有效的RNA剪接所必需的顺式元件破坏的结果。特别是,我们将重排的VDJβ外显子确定为独特地密集包裹着外显子剪接增强子(ESE),从而使该外显子对突变破坏高度敏感。由于我们为这些研究开发的嵌合基因产生异常稳定的核前mRNA,当受到ESE突变攻击时会积累,因此我们建议将其用作鉴定和表征ESE的敏感体内系统。

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