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Pre-mRNA Secondary Structures Influence Exon Recognition

机译:前mRNA二级结构影响外显子识别。

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摘要

The secondary structure of a pre-mRNA influences a number of processing steps including alternative splicing. Since most splicing regulatory proteins bind to single-stranded RNA, the sequestration of RNA into double strands could prevent their binding. Here, we analyzed the secondary structure context of experimentally determined splicing enhancer and silencer motifs in their natural pre-mRNA context. We found that these splicing motifs are significantly more single-stranded than controls. These findings were validated by transfection experiments, where the effect of enhancer or silencer motifs on exon skipping was much more pronounced in single-stranded conformation. We also found that the structural context of predicted splicing motifs is under selection, suggesting a general importance of secondary structures on splicing and adding another level of evolutionary constraints on pre-mRNAs. Our results explain the action of mutations that affect splicing and indicate that the structural context of splicing motifs is part of the mRNA splicing code.
机译:前mRNA的二级结构影响许多加工步骤,包括选择性剪接。由于大多数剪接调节蛋白都与单链RNA结合,因此将RNA螯合成双链可能会阻止其结合。在这里,我们分析了在天然pre-mRNA环境中实验确定的剪接增强子和沉默子基序的二级结构环境。我们发现,这些剪接基序比对照显着多单链。这些发现通过转染实验得到验证,其中增强子或沉默子基序对外显子跳跃的影响在单链构象中更为明显。我们还发现,预测的剪接基序的结构背景正在选择中,这表明二级结构在剪接上具有普遍的重要性,并在前mRNA上增加了另一水平的进化限制。我们的结果解释了影响剪接的突变的作用,并表明剪接基序的结构背景是mRNA剪接代码的一部分。

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