Bourgeois Gabrielle, Ney Michel, Gaspar Imre, Aigueperse Christelle, Schaefer Matthias, Kellner Stefanie, Helm Mark, Motorin Yuri
Laboratoire IMoPA, UMR 7365 UL-CNRS, BioPole de UL, Vandoeuvre-les-Nancy, France.
EMBL Heidelberg, Meyerhofstraße 1, 69117, Heidelberg, Germany.
PLoS One. 2015 Jul 21;10(7):e0133321. doi: 10.1371/journal.pone.0133321. eCollection 2015.
Modified nucleotide 5-methylcytosine (m5C) is frequently present in various eukaryotic RNAs, including tRNAs, rRNAs and in other non-coding RNAs, as well as in mRNAs. RNA:m5C-methyltranferases (MTases) Nop2 from S. cerevisiae and human proliferation-associated nucleolar antigen p120 are both members of a protein family called Nop2/NSUN/NOL1. Protein p120 is well-known as a tumor marker which is over-expressed in various cancer tissues. Using a combination of RNA bisulfite sequencing and HPLC-MS/MS analysis, we demonstrated here that p120 displays an RNA:m5C- MTase activity, which restores m5C formation at position 2870 in domain V of 25S rRNA in a nop2Δ yeast strain. We also confirm that yeast proteins Nop2p and Rcm1p catalyze the formation of m5C in domains V and IV, respectively. In addition, we do not find any evidence of m5C residues in yeast 18S rRNA. We also performed functional complementation of Nop2-deficient yeasts by human p120 and studied the importance of different sequence and structural domains of Nop2 and p120 for yeast growth and m5C-MTase activity. Chimeric protein formed by Nop2 and p120 fragments revealed the importance of Nop2 N-terminal domain for correct protein localization and its cellular function. We also validated that the presence of Nop2, rather than the m5C modification in rRNA itself, is required for pre-rRNA processing. Our results corroborate that Nop2 belongs to the large family of pre-ribosomal proteins and possesses two related functions in pre-rRNA processing: as an essential factor for cleavages and m5C:RNA:modification. These results support the notion of quality control during ribosome synthesis by such modification enzymes.
修饰核苷酸5-甲基胞嘧啶(m5C)经常存在于各种真核RNA中,包括转运RNA(tRNA)、核糖体RNA(rRNA)以及其他非编码RNA,还有信使RNA(mRNA)。来自酿酒酵母的RNA:m5C-甲基转移酶(MTase)Nop2和人类增殖相关核仁抗原p120都是一个名为Nop2/NSUN/NOL1的蛋白质家族的成员。蛋白质p120作为一种肿瘤标志物广为人知,它在各种癌症组织中过度表达。通过结合RNA亚硫酸氢盐测序和高效液相色谱-串联质谱(HPLC-MS/MS)分析,我们在此证明p120具有RNA:m5C-MTase活性,该活性可在nop2Δ酵母菌株的25S rRNA结构域V的第2870位恢复m5C的形成。我们还证实酵母蛋白Nop2p和Rcm1p分别催化结构域V和IV中m5C的形成。此外,我们在酵母18S rRNA中未发现m5C残基的任何证据。我们还用人类p120对Nop2缺陷型酵母进行了功能互补,并研究了Nop2和p120不同序列和结构域对酵母生长和m5C-MTase活性的重要性。由Nop2和p120片段形成的嵌合蛋白揭示了Nop2 N端结构域对正确的蛋白质定位及其细胞功能的重要性。我们还验证了前体核糖体RNA(pre-rRNA)加工需要Nop2的存在,而不是rRNA本身的m5C修饰。我们的结果证实Nop2属于大型前核糖体蛋白家族,并且在pre-rRNA加工中具有两个相关功能:作为切割的必需因子和m5C:RNA修饰。这些结果支持了此类修饰酶在核糖体合成过程中进行质量控制的观点。