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特雷彻·柯林斯综合征(TCOF1)基因产物参与前体核糖体RNA(pre-rRNA)的甲基化过程。

The Treacher Collins syndrome (TCOF1) gene product is involved in pre-rRNA methylation.

作者信息

Gonzales Bianca, Henning Dale, So Rolando B, Dixon Jill, Dixon Michael J, Valdez Benigno C

机构信息

Department of Pharmacology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Hum Mol Genet. 2005 Jul 15;14(14):2035-43. doi: 10.1093/hmg/ddi208. Epub 2005 Jun 1.

Abstract

Treacher Collins syndrome (TCS) is characterized by defects in craniofacial development, which results from mutations in the TCOF1 gene. TCOF1 encodes the nucleolar phosphoprotein treacle, which interacts with upstream binding factor (UBF) and affects transcription of the ribosomal DNA gene. The present study shows participation of treacle in the 2'-O-methylation of pre-rRNA. Antisense-mediated down-regulation of treacle expression in Xenopus laevis oocytes reduced 2'-O-methylation of pre-rRNA. Analysis of RNA isolated from wild-type and Tcof1+/- heterozygous mice embryos from strains that exhibit a lethal phenotype showed significant reduction in 2'-O-methylation at nucleotide C463 of 18S rRNA. The level of pseudouridylation of U1642 of 18S rRNA from the same RNA samples was not affected suggesting specificity. There is no significant difference in rRNA methylation between wild-type and heterozygous embryos of DBA x BALB/c mice, which have no obvious craniofacial phenotype. The function of treacle in pre-rRNA methylation is most likely mediated by its direct physical interaction with NOP56, a component of the ribonucleoprotein methylation complex. Although treacle co-localizes with UBF throughout mitosis, it co-localizes with NOP56 and fibrillarin, a putative methyl transferase, only during telophase when rDNA gene transcription and pre-rRNA methylation are known to commence. These observations suggest that treacle might link RNA polymerase I-catalyzed transcription and post-transcriptional modification of pre-rRNA. We hypothesize that haploinsufficiency of treacle in TCS patients results in inhibition of production of properly modified mature rRNA in addition to inhibition of rDNA gene transcription, which consequently affects proliferation and proper differentiation of specific embryonic cells during development.

摘要

特雷彻·柯林斯综合征(TCS)的特征是颅面发育缺陷,这是由TCOF1基因突变引起的。TCOF1编码核仁磷蛋白treacle,它与上游结合因子(UBF)相互作用并影响核糖体DNA基因的转录。本研究表明treacle参与了前体rRNA的2'-O-甲基化。在非洲爪蟾卵母细胞中,反义介导的treacle表达下调降低了前体rRNA的2'-O-甲基化。对来自表现出致死表型的品系的野生型和Tcof1+/-杂合小鼠胚胎分离的RNA进行分析,结果显示18S rRNA核苷酸C463处的2'-O-甲基化显著降低。来自相同RNA样本的18S rRNA的U1642假尿苷酸化水平未受影响,表明具有特异性。在没有明显颅面表型的DBA×BALB/c小鼠的野生型和杂合胚胎之间,rRNA甲基化没有显著差异。treacle在前体rRNA甲基化中的功能很可能是通过其与核糖核蛋白甲基化复合物的一个组分NOP56的直接物理相互作用介导的。尽管treacle在整个有丝分裂过程中都与UBF共定位,但它仅在末期与NOP56和一种假定的甲基转移酶纤维蛋白原共定位,已知此时rDNA基因转录和前体rRNA甲基化开始。这些观察结果表明,treacle可能将RNA聚合酶I催化的转录与前体rRNA的转录后修饰联系起来。我们推测,TCS患者中treacle的单倍剂量不足除了抑制rDNA基因转录外,还会抑制正确修饰的成熟rRNA的产生,从而影响发育过程中特定胚胎细胞的增殖和正常分化。

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