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The role of branchpoint-3 splice site spacing and interaction between intron terminal nucleotides in 3 splice site selection in Saccharomyces cerevisiae.

机译:啤酒酵母中3剪接位点的分支点3剪接位点间距和内含子末端核苷酸之间的相互作用的作用。

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摘要

A conserved 3' splice site YAG is essential for the second step of pre-mRNA splicing but no trans-acting factor recognizing this sequence has been found. A direct, non-Watson-Crick interaction between the intron terminal nucleotides was suggested to affect YAG selection. The mechanism of YAG recognition was proposed to involve 5' to 3' scanning originating from the branchpoint or the polypyrimidine tract. We have constructed a yeast intron harbouring two closely spaced 3' splice sites. Preferential selection of a wild-type site over mutant ones indicated that the two sites are competing. For two identical sequences, the proximal site is selected. As previously observed, an A at the first intron nucleotide spliced most efficiently with a 3' splice site UAC. In this context, UAA or UAU were also more efficient 3' splice sites than UAG and competed more efficiently than the wild-type sequence with a 3' splice site UAC. We observed that a U at the first intron nucleotide is used for splicing in combination with 3' splice sites UAG, UAA or UAU. Our data indicate that the 3' splice site is not primarily selected through an interaction with the first intron nucleotide. Selection of the 3' splice site depends critically on its distance from the branchpoint but does not occur by a simple leaky scanning mechanism.
机译:保守的3'剪接位点YAG对于mRNA前剪接的第二步至关重要,但尚未发现识别该序列的反式作用因子。内含子末端核苷酸之间的直接,非沃森-克里克相互作用被认为影响YAG的选择。提出了YAG识别的机制涉及从分支点或聚嘧啶束开始的5'至3'扫描。我们构建了一个酵母内含子,其中包含两个紧密间隔的3'剪接位点。野生型位点优于突变位点的选择表明这两个位点是竞争的。对于两个相同的序列,选择近端位点。如先前观察到的,在第一个内含子核苷酸处的A与3'剪接位点UAC最有效地剪接。在这种情况下,UAA或UAU也是比UAG更有效的3'剪接位点,并且比具有3'剪接位点UAC的野生型序列更有效地竞争。我们观察到,在第一个内含子核苷酸处的一个U与3'剪接位点UAG,UAA或UAU结合使用。我们的数据表明3'剪接位点不是主要通过与第一个内含子核苷酸的相互作用来选择。 3'剪接位点的选择主要取决于其距分支点的距离,但不会通过简单的泄漏扫描机制发生。

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