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CFTR 外显子 12 剪接的复合外显子调控元件的功能特性和进化剪接约束。

Functional properties and evolutionary splicing constraints on a composite exonic regulatory element of splicing in CFTR exon 12.

机构信息

International Centre for Genetic Engineering and Biotechnology, 34149 Trieste, Italy.

出版信息

Nucleic Acids Res. 2010 Jan;38(2):647-59. doi: 10.1093/nar/gkp1040. Epub 2009 Nov 12.

Abstract

In general, splicing regulatory elements are defined as Enhancers or Silencers depending on their positive or negative effect upon exon inclusion. Often, these sequences are usually present separate from each other in exonic/intronic sequences. The Composite Exonic Splicing Regulatory Elements (CERES) represent an extreme physical overlap of enhancer/silencer activity. As a result, when CERES elements are mutated the consequences on the splicing process are difficult to predict. Here, we show that the functional activity of the CERES2 sequence in CFTR exon 12 is regulated by the binding, in very close proximity to each other, of several SR and hnRNP proteins. Moreover, our results show that practically the entire exon 12 sequence context participate in its definition. The consequences of this situation can be observed at the evolutionary level by comparing changes in conservation of different splicing elements in different species. In conclusion, our study highlights how it is increasingly difficult to define many exonic sequences by simply breaking them down in isolated enhancer/silencer or even neutral elements. The real picture is close to one of continuous competition between positive and negative factors where affinity for the target sequences and other dynamic factors decide the inclusion or exclusion of the exon.

摘要

一般来说,剪接调控元件根据其对exon 包含的正或负效应被定义为增强子或沉默子。通常,这些序列在exon/intron 序列中彼此分离。复合外显子剪接调控元件(CERES)代表增强子/沉默子活性的极端物理重叠。因此,当 CERES 元件发生突变时,对剪接过程的影响很难预测。在这里,我们表明 CFTR 外显子 12 中的 CERES2 序列的功能活性受几种 SR 和 hnRNP 蛋白的紧密结合调控。此外,我们的结果表明,实际上外显子 12 序列的整个上下文都参与了其定义。通过比较不同物种中不同剪接元件的保守性变化,可以在进化水平上观察到这种情况的后果。总之,我们的研究强调了如何通过简单地将它们分解为孤立的增强子/沉默子甚至中性元件来定义许多外显子序列变得越来越困难。真实情况更接近于正、负因素之间的持续竞争,靶序列的亲和力和其他动态因素决定了 exon 的包含或排除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1dac/2811005/9a01b842009c/gkp1040f1.jpg

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