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Functional selection of splicing enhancers that stimulate trans-splicing in vitro.

机译:刺激体外转拼的剪接增强子的功能选择。

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摘要

The role of exonic sequences in naturally occurring trans-splicing has not been explored in detail. Here, we have identified trans-splicing enhancers through the use of an iterative selection scheme. Several classes of enhancer sequences were identified that led to dramatic increases in trans-splicing efficiency. Two sequence families were investigated in detail. These include motifs containing the element (G/C)GAC(G/C) and also 5' splice site-like sequences. Distinct elements were tested for their ability to function as splicing enhancers and in competition experiments. In addition, discrete trans-acting factors were identified. This work demonstrates that splicing enhancers are able to effect a large increase in trans-splicing efficiency and that the process of exon definition is able to positively enhance trans-splicing even though the reaction itself is independent of the need for the 5' end of U1 snRNA. Due to the presence of internal introns in messages that are trans-spliced, the natural arrangement of 5' splice sites downstream of trans-splicing acceptors may lead to a general promotion of this unusual reaction.
机译:外显子序列在自然发生的反式剪接中的作用尚未详细探讨。在这里,我们通过使用迭代选择方案确定了转拼增强子。鉴定了几类增强子序列,它们导致反式剪接效率的显着提高。详细研究了两个序列家族。这些包括基元(G / C)GAC(G / C)以及5'剪接位点样序列的基序。测试了不同元件作为剪接增强剂的功能以及在竞争实验中的能力。另外,鉴定了离散的反式作用因子。这项工作表明,剪接增强子能够大大提高反式剪接效率,并且外显子定义过程能够积极地增强反式剪接,即使反应本身不依赖于U1的5'端。核糖核酸由于在反式剪接的消息中存在内部内含子,因此反式剪接受体下游5'剪接位点的自然排列可能导致这种异常反应的普遍促进。

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