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多嘧啶序列结合(PTB)蛋白在锥虫RNA代谢中的多种作用。

Multiple roles for polypyrimidine tract binding (PTB) proteins in trypanosome RNA metabolism.

作者信息

Stern Michael Zeev, Gupta Sachin Kumar, Salmon-Divon Mali, Haham Tomer, Barda Omer, Levi Sarit, Wachtel Chaim, Nilsen Timothy W, Michaeli Shulamit

机构信息

Bar-Ilan University, Ramat-Gan, Israel.

出版信息

RNA. 2009 Apr;15(4):648-65. doi: 10.1261/rna.1230209. Epub 2009 Feb 13.

Abstract

Trypanosomatid genomes encode for numerous proteins containing an RNA recognition motif (RRM), but the function of most of these proteins in mRNA metabolism is currently unknown. Here, we report the function of two such proteins that we have named PTB1 and PTB2, which resemble the mammalian polypyrimidine tract binding proteins (PTB). RNAi silencing of these factors indicates that both are essential for life. PTB1 and PTB2 reside mostly in the nucleus, but are found in the cytoplasm, as well. Microarray analysis performed on PTB1 and PTB2 RNAi silenced cells indicates that each of these factors differentially affects the transcriptome, thus regulating a different subset of mRNAs. PTB1 and PTB2 substrates were categorized bioinformatically, based on the presence of PTB binding sites in their 5' and 3' flanking sequences. Both proteins were shown to regulate mRNA stability. Interestingly, PTB proteins are essential for trans-splicing of genes containing C-rich polypyrimidine tracts. PTB1, but not PTB2, also affects cis-splicing. The specificity of binding of PTB1 was established in vivo and in vitro using a model substrate. This study demonstrates for the first time that trans-splicing of only certain substrates requires specific factors such as PTB proteins for their splicing. The trypanosome PTB proteins, like their mammalian homologs, represent multivalent RNA binding proteins that regulate mRNAs from their synthesis to degradation.

摘要

锥虫基因组编码了许多含有RNA识别基序(RRM)的蛋白质,但目前大多数这些蛋白质在mRNA代谢中的功能尚不清楚。在此,我们报道了两种这样的蛋白质的功能,我们将其命名为PTB1和PTB2,它们类似于哺乳动物的多聚嘧啶序列结合蛋白(PTB)。对这些因子进行RNA干扰沉默表明两者对生命都是必不可少的。PTB1和PTB2主要存在于细胞核中,但也存在于细胞质中。对PTB1和PTB2 RNA干扰沉默细胞进行的微阵列分析表明,这些因子中的每一个都对转录组有不同的影响,从而调节不同的mRNA子集。基于PTB结合位点在其5'和3'侧翼序列中的存在,通过生物信息学方法对PTB1和PTB2的底物进行了分类。结果表明这两种蛋白质都调节mRNA的稳定性。有趣的是,PTB蛋白对于含有富含C的多聚嘧啶序列的基因的反式剪接是必不可少的。PTB1而非PTB2也影响顺式剪接。使用模型底物在体内和体外确定了PTB1结合的特异性。这项研究首次证明,只有某些底物的反式剪接需要特定因子如PTB蛋白来进行剪接。锥虫PTB蛋白与其哺乳动物同源物一样,代表多价RNA结合蛋白,从mRNA的合成到降解对其进行调节。

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