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首页> 外文期刊>Nucleic Acids Research >Yeast Nop2 and Rcm1 methylate C2870 and C2278 of the 25S rRNA, respectively
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Yeast Nop2 and Rcm1 methylate C2870 and C2278 of the 25S rRNA, respectively

机译:25S rRNA的酵母Nop2和Rcm1甲基化C2870和C2278

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Yeast 25S rRNA was reported to contain a single cytosine methylation (m(5)C). In the present study using a combination of RP-HPLC, mung bean nuclease assay and rRNA mutagenesis, we discovered that instead of one, yeast contains two m(5)C residues at position 2278 and 2870. Furthermore, we identified and characterized two putative methyltransferases, Rcm1 and Nop2 to be responsible for these two cytosine methylations, respectively. Both proteins are highly conserved, which correlates with the presence of two m(5)C residues at identical positions in higher eukaryotes, including humans. The human homolog of yeast Nop2, p120 has been discovered to be upregulated in various cancer tissues, whereas the human homolog of Rcm1, NSUN5 is completely deleted in the William's-Beuren Syndrome. The substrates and function of both human homologs remained unknown. In the present study, we also provide insights into the significance of these two m(5)C residues. The loss of m(5)C2278 results in anisomycin hypersensitivity, whereas the loss of m(5)C2870 affects ribosome synthesis and processing. Establishing the locations and enzymes in yeast will not only help identifying the function of their homologs in higher organisms, but will also enable understanding the role of these modifications in ribosome function and architecture.
机译:据报道,酵母25S rRNA包含单个胞嘧啶甲基化(m(5)C)。在本研究中,结合使用RP-HPLC,绿豆核酸酶测定和rRNA诱变,我们发现酵母在2278和2870位上含有两个m(5)C残基,而不是一个,并且鉴定并鉴定了两个推定的特征甲基转移酶Rcm1和Nop2分别负责这两个胞嘧啶甲基化。两种蛋白质都是高度保守的,这与包括人在内的高等真核生物中相同位置的两个m(5)C残基的存在有关。已发现酵母Nop2,p120的人类同源物在各种癌症组织中均被上调,而Rcm1,NSUN5的人类同源物在威廉姆·布伦综合症中被完全删除。两种人类同源物的底物和功能仍然未知。在本研究中,我们还提供了对这两个m(5)C残基的意义的见解。 m(5)C2278的损失导致茴香霉素超敏反应,而m(5)C2870的损失影响核糖体的合成和加工。在酵母中建立位置和酶,不仅将有助于鉴定其同系物在高等生物中的功能,而且还将有助于理解这些修饰在核糖体功能和结构中的作用。

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