首页> 外文期刊>Nucleic Acids Research >The Bowen-Conradi syndrome protein Nep1 (Emg1) has a dual role in eukaryotic ribosome biogenesis, as an essential assembly factor and in the methylation of Psi 1191 in yeast 18S rRNA
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The Bowen-Conradi syndrome protein Nep1 (Emg1) has a dual role in eukaryotic ribosome biogenesis, as an essential assembly factor and in the methylation of Psi 1191 in yeast 18S rRNA

机译:Bowen-Conradi综合征蛋白Nep1(Emg1)在真核生物核糖体生物发生中起双重作用,是必需的装配因子,并且在酵母18S rRNA中Psi 1191甲基化

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The Nep1 (Emg1) SPOUT-class methyltransferase is an essential ribosome assembly factor and the human Bowen-Conradi syndrome (BCS) is caused by a specific Nep1(D86G) mutation. We recently showed in vitro that Methanocaldococcus jannaschii Nep1 is a sequence-specific pseudouridine-N1-methyltransferase. Here, we show that in yeast the in vivo target site for Nep1-catalyzed methylation is located within loop 35 of the 18S rRNA that contains the unique hypermodification of U1191 to 1-methyl-3-(3-amino-3-carboxypropyl)-pseudouri-dine (m1acp3 Psi). Specific C-14-methionine labelling of 18S rRNA in yeast mutants showed that Nep1 is not required for acp-modification but suggested a function in Psi 1191 methylation. ESI MS analysis of acp-modified Psi-nucleosides in a delta nep1-mutant showed that Nep1 catalyzes the Psi 1191 methylation in vivo. Remarkably, the restored growth of a nep1-1(ts) mutant upon addition of S-adenosylmethionine was even observed after preventing U1191 methylation in a delta snr35 mutant. This strongly suggests a dual Nep1 function, as Psi 1191-methyltransferase and ribosome assembly factor. Interestingly, the Nep1 methyltransferase activity is not affected upon introduction of the BCS mutation. Instead, the mutated protein shows enhanced dimerization propensity and increased affinity for its RNA-target in vitro. Furthermore, the BCS mutation prevents nucleolar accumulation of Nep1, which could be the reason for reduced growth in yeast and the Bowen-Conradi syndrome.
机译:Nep1(Emg1)SPOUT类甲基转移酶是必需的核糖体装配因子,人Bowen-Conradi综合征(BCS)由特定的Nep1(D86G)突变引起。我们最近在体外显示,詹氏甲烷球菌Nep1是序列特异性假尿苷-N1-甲基转移酶。在这里,我们表明在酵母中,Nep1催化甲基化的体内靶位点位于18S rRNA的环35内,该环包含U1191对1-甲基-3-(3-氨基-3-羧丙基)-的独特超修饰。伪尿嘧啶(m1acp3 Psi)。酵母突变体中18S rRNA的特定C-14-蛋氨酸标记显示,Nep1不是acp修饰所必需的,但暗示了Psi 1191甲基化的功能。对delp nep1突变体中acp修饰的Psi核苷的ESI MS分析表明,Nep1在体内催化Psi 1191甲基化。值得注意的是,在防止δsnr35突变体中的U1191甲基化后,甚至观察到添加S-腺苷甲硫氨酸后nep1-1(ts)突变体的恢复生长。这强烈暗示双重Nep1功能,如Psi 1191-甲基转移酶和核糖体装配因子。有趣的是,Nep1甲基转移酶活性不受BCS突变引入的影响。相反,突变的蛋白在体外显示出增强的二聚化倾向和对其RNA靶标的亲和力增加。此外,BCS突变阻止了Nep1的核仁积累,这可能是酵母和Bowen-Conradi综合征生长减少的原因。

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