School of Medicine and Department of Urology, UCSF Helen Diller Comprehensive Cancer Center, San Francisco, CA 94115, USA.
Cell Rep. 2013 May 30;3(5):1493-502. doi: 10.1016/j.celrep.2013.04.030. Epub 2013 May 23.
Noncoding RNAs control critical cellular processes, although their contribution to disease remains largely unexplored. Dyskerin associates with hundreds of H/ACA small RNAs to generate a multitude of functionally distinct ribonucleoproteins (RNPs). The DKC1 gene, encoding dyskerin, is mutated in the multisystem disorder X-linked dyskeratosis congenita (X-DC). A central question is whether DKC1 mutations affect the stability of H/ACA RNPs, including those modifying ribosomal RNA (rRNA). We carried out comprehensive profiling of dyskerin-associated H/ACA RNPs, revealing remarkable heterogeneity in the expression and function of subsets of H/ACA small RNAs in X-DC patient cells. Using a mass spectrometry approach, we uncovered single-nucleotide perturbations in dyskerin-guided rRNA modifications, providing functional readouts of small RNA dysfunction in X-DC. In addition, we identified that, strikingly, the catalytic activity of dyskerin is required for accurate hematopoietic stem cell differentiation. Altogether, these findings reveal that small noncoding RNA dysfunctions may contribute to the pleiotropic manifestation of human disease.
非编码 RNA 控制着关键的细胞过程,尽管它们在疾病中的作用在很大程度上仍未得到探索。核仁蛋白 dyskerin 与数百种 H/ACA 小 RNA 结合,生成多种具有不同功能的核糖核蛋白 (RNP)。编码核仁蛋白 dyskerin 的 DKC1 基因在多系统疾病 X 连锁先天性角化不良症 (X-DC) 中发生突变。一个核心问题是 DKC1 突变是否会影响 H/ACA RNP 的稳定性,包括那些修饰核糖体 RNA (rRNA) 的 RNP。我们对 dyskerin 相关的 H/ACA RNP 进行了全面分析,揭示了 X-DC 患者细胞中 H/ACA 小 RNA 亚群的表达和功能存在显著异质性。我们使用质谱分析方法,揭示了 dyskerin 指导的 rRNA 修饰中的单核苷酸扰动,为 X-DC 中小 RNA 功能障碍提供了功能读数。此外,我们还发现,令人惊讶的是,核仁蛋白 dyskerin 的催化活性是造血干细胞分化的精确所必需的。总之,这些发现表明小非编码 RNA 功能障碍可能导致人类疾病的多效性表现。