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前体mRNA二级结构与剪接调控

Pre-mRNA secondary structure and the regulation of splicing.

作者信息

Balvay L, Libri D, Fiszman M Y

机构信息

Department of Molecular Biology, Pasteur Institute, Paris, France.

出版信息

Bioessays. 1993 Mar;15(3):165-9. doi: 10.1002/bies.950150304.

Abstract

Nuclear pre-mRNAs must be precisely processed to give rise to mature cytoplasmic mRNAs. This maturation process, known as splicing, involves excision of intron sequences and ligation of the exon sequences. One of the major problems in understanding this process is how splice sites, the sequences which form the boundaries between introns and exons, can be accurately selected. A number of studies have defined conserved sequences within introns which were later shown to interact with small nuclear ribonucleoproteins (snRNPs). However, due to the simplicity of these conserved sequences it has become clear that other elements must be involved and a number of studies have indicated the importance of secondary structures within pre-mRNAs. Using various examples, we shall show that such structures can help to specify splice sites by modifying physical distances within introns or by being involved in the definition of exons and lastly, that they can be part of the regulation of alternative splicing.

摘要

核内前体信使核糖核酸(pre-mRNAs)必须经过精确加工才能产生成熟的细胞质信使核糖核酸(mRNAs)。这个成熟过程,即剪接,涉及内含子序列的切除和外显子序列的连接。理解这一过程的主要问题之一是,剪接位点,即形成内含子和外显子边界的序列,是如何被准确选择的。一些研究已经确定了内含子中的保守序列,这些序列后来被证明与小核核糖核蛋白(snRNPs)相互作用。然而,由于这些保守序列的简单性,很明显还必须有其他元件参与,并且一些研究已经表明前体信使核糖核酸中二级结构的重要性。通过各种例子,我们将表明这样的结构可以通过改变内含子内的物理距离、参与外显子的定义来帮助确定剪接位点,最后,它们可以成为可变剪接调控的一部分。

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