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酵母 Rrp8p,一种新型甲基转移酶,负责 25S rRNA 的 m1A 645 碱基修饰。

Yeast Rrp8p, a novel methyltransferase responsible for m1A 645 base modification of 25S rRNA.

机构信息

Institute of Molecular Biosciences, Goethe University Frankfurt, 60438 Frankfurt/M, Germany.

出版信息

Nucleic Acids Res. 2013 Jan;41(2):1151-63. doi: 10.1093/nar/gks1102. Epub 2012 Nov 23.

Abstract

Ribosomal RNA undergoes various modifications to optimize ribosomal structure and expand the topological potential of RNA. The most common nucleotide modifications in ribosomal RNA (rRNA) are pseudouridylations and 2'-O methylations (Nm), performed by H/ACA box snoRNAs and C/D box snoRNAs, respectively. Furthermore, rRNAs of both ribosomal subunits also contain various base modifications, which are catalysed by specific enzymes. These modifications cluster in highly conserved areas of the ribosome. Although most enzymes catalysing 18S rRNA base modifications have been identified, little is known about the 25S rRNA base modifications. The m(1)A modification at position 645 in Helix 25.1 is highly conserved in eukaryotes. Helix formation in this region of the 25S rRNA might be a prerequisite for a correct topological framework for 5.8S rRNA to interact with 25S rRNA. Surprisingly, we have identified ribosomal RNA processing protein 8 (Rrp8), a nucleolar Rossman-fold like methyltransferase, to carry out the m(1)A base modification at position 645, although Rrp8 was previously shown to be involved in A2 cleavage and 40S biogenesis. In addition, we were able to identify specific point mutations in Rrp8, which show that a reduced S-adenosyl-methionine binding influences the quality of the 60S subunit. This highlights the dual functionality of Rrp8 in the biogenesis of both subunits.

摘要

核糖体 RNA 经历各种修饰以优化核糖体结构并扩展 RNA 的拓扑潜力。核糖体 RNA (rRNA) 中最常见的核苷酸修饰是假尿嘧啶化和 2'-O 甲基化 (Nm),分别由 H/ACA 盒 snoRNA 和 C/D 盒 snoRNA 完成。此外,两个核糖体亚基的 rRNA 还含有各种碱基修饰,这些修饰由特定的酶催化。这些修饰集中在核糖体的高度保守区域。尽管已经鉴定出催化 18S rRNA 碱基修饰的大多数酶,但对 25S rRNA 碱基修饰知之甚少。在真核生物中,位置 645 的螺旋 25.1 处的 m(1)A 修饰高度保守。该区域 25S rRNA 螺旋的形成可能是正确拓扑框架的先决条件,以使 5.8S rRNA 与 25S rRNA 相互作用。令人惊讶的是,我们鉴定了核糖体 RNA 加工蛋白 8 (Rrp8),一种核仁 Rossman 折叠样甲基转移酶,该酶在位置 645 上执行 m(1)A 碱基修饰,尽管 Rrp8 先前被证明参与 A2 切割和 40S 生物发生。此外,我们能够鉴定 Rrp8 中的特定点突变,表明减少的 S-腺苷甲硫氨酸结合会影响 60S 亚基的质量。这突显了 Rrp8 在两个亚基生物发生中的双重功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9eb/3553958/aa9aae58bb5d/gks1102f1p.jpg

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