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拟南芥PTB1和PTB2蛋白负向调控一个微小外显子剪接报告基因的剪接,并对内源基因的可变剪接产生不同影响。

Arabidopsis PTB1 and PTB2 proteins negatively regulate splicing of a mini-exon splicing reporter and affect alternative splicing of endogenous genes differentially.

作者信息

Simpson Craig G, Lewandowska Dominika, Liney Michele, Davidson Diane, Chapman Sean, Fuller John, McNicol Jim, Shaw Paul, Brown John W S

机构信息

Cell and Molecular Sciences, The James Hutton Institute, Invergowrie, Dundee, DD2 5DA, UK.

Biomathematics and Statistics Scotland, Invergowrie, Dundee, DD2 5DA, UK.

出版信息

New Phytol. 2014 Jul;203(2):424-436. doi: 10.1111/nph.12821. Epub 2014 Apr 22.

Abstract

This paper examines the function of Arabidopsis thaliana AtPTB1 and AtPTB2 as plant splicing factors. The effect on splicing of overexpression of AtPTB1 and AtPTB2 was analysed in an in vivo protoplast transient expression system with a novel mini-exon splicing reporter. A range of mutations in pyrimidine-rich sequences were compared with and without AtPTB and NpU2AF65 overexpression. Splicing analyses of constructs in protoplasts and RNA from overexpression lines used high-resolution reverse transcription polymerase chain reaction (RT-PCR). AtPTB1 and AtPTB2 reduced inclusion/splicing of the potato invertase mini-exon splicing reporter, indicating that these proteins can repress plant intron splicing. Mutation of the polypyrimidine tract and closely associated Cytosine and Uracil-rich (CU-rich) sequences, upstream of the mini-exon, altered repression by AtPTB1 and AtPTB2. Coexpression of a plant orthologue of U2AF65 alleviated the splicing repression of AtPTB1. Mutation of a second CU-rich upstream of the mini-exon 3' splice site led to a decline in mini-exon splicing, indicating the presence of a splicing enhancer sequence. Finally, RT-PCR of AtPTB overexpression lines with c. 90 known alternative splicing (AS) events showed that AtPTBs significantly altered AS of over half the events. AtPTB1 and AtPTB2 are splicing factors that influence alternative splicing. This occurs in the potato invertase mini-exon via the polypyrimidine tract and associated pyrimidine-rich sequence.

摘要

本文研究了拟南芥AtPTB1和AtPTB2作为植物剪接因子的功能。利用一种新型的小外显子剪接报告基因,在体内原生质体瞬时表达系统中分析了AtPTB1和AtPTB2过表达对剪接的影响。将富含嘧啶序列的一系列突变与有无AtPTB和NpU2AF65过表达的情况进行了比较。对原生质体中的构建体和过表达系的RNA进行剪接分析时使用了高分辨率逆转录聚合酶链反应(RT-PCR)。AtPTB1和AtPTB2降低了马铃薯转化酶小外显子剪接报告基因的包含/剪接,表明这些蛋白质可以抑制植物内含子剪接。小外显子上游的多嘧啶序列以及与之紧密相关的富含胞嘧啶和尿嘧啶(CU-rich)的序列发生突变,改变了AtPTB1和AtPTB2的抑制作用。U2AF65的植物直系同源物的共表达减轻了AtPTB1的剪接抑制。小外显子3'剪接位点上游第二个富含CU的序列发生突变导致小外显子剪接下降,表明存在剪接增强子序列。最后,对约90个已知可变剪接(AS)事件的AtPTB过表达系进行RT-PCR分析表明,AtPTB显著改变了超过一半事件的可变剪接。AtPTB1和AtPTB2是影响可变剪接的剪接因子。这通过多嘧啶序列和相关的富含嘧啶序列在马铃薯转化酶小外显子中发生。

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