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Unexpected functional versatility of the pentatricopeptide repeat proteins PGR3, PPR5 and PPR10

机译:戊庚二肽重复蛋白质PGR3,PPR5和PPR10的意外功能多功能性

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摘要

Pentatricopeptide repeat (PPR) proteins are a large family of helical repeat proteins that bind RNA in mitochondria and chloroplasts. Sites of PPR action have been inferred primarily from genetic data, which have led to the view that most PPR proteins act at a very small number of sites in vivo. Here, we report new functions for three chloroplast PPR proteins that had already been studied in depth. Maize PPR5, previously shown to promote trnG splicing, is also required for rpl16 splicing. Maize PPR10, previously shown to bind the atpI-atpH and psaJ-rpl33 intercistronic regions, also stabilizes a 3'-end downstream from psaI. Arabidopsis PGR3, shown previously to bind upstream of petL, also binds the rpl14-rps8 intercistronic region where it stabilizes a 3'-end and stimulates rps8 translation. These functions of PGR3 are conserved in maize. The discovery of new functions for three proteins that were already among the best characterized members of the PPR family implies that functional repertoires of PPR proteins are more complex than have been appreciated. The diversity of sequences bound by PPR10 and PGR3 in vivo highlights challenges of predicting binding sites of native PPR proteins based on the amino acid code for nucleotide recognition by PPR motifs.
机译:戊庚二肽重复(PPR)蛋白质是一种大型螺旋重复蛋白质,其在线粒体和叶绿体中结合RNA。 PPR行动的网站主要来自遗传数据,这导致了大多数PPR蛋白在体内在非常少量的位点起作用。在这里,我们报告了三种已经深入研究过的三种叶绿体PPR蛋白的新功能。 RPL16拼接还需要玉米PPR5,以前显示促进TRNG剪接。玉米PPR10,以前所示用ATPI-atph和PSAJ-RPL33校长区域,也稳定了PSAI下游的3'末端。以前在PETL上游结合的拟南芥PGR3还结合RPL14-RPS8校长区域,在那里它稳定3'-末端并刺激RPS8翻译。 PGR3的这些功能在玉米中保守。已经发现了PPR家族最佳特征成员的三种蛋白质的新功能意味着PPR蛋白的功能性曲目比得到的更复杂。 VIVO中PPR10和PGR3结合的序列的多样性突出了基于PPR基序的氨基酸码预测天然PPR蛋白的结合位点的挑战。

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