Goldfarb Katherine C, Cech Thomas R
Department of Chemistry and Biochemistry, BioFrontiers Institute, University of Colorado at Boulder, Boulder, Colorado 80302, USA.
Howard Hughes Medical Institute, University of Colorado at Boulder, Boulder, Colorado 80302, USA.
Genes Dev. 2017 Jan 1;31(1):59-71. doi: 10.1101/gad.286963.116. Epub 2017 Jan 23.
MRP RNA is an abundant, essential noncoding RNA whose functions have been proposed in yeast but are incompletely understood in humans. Mutations in the genomic locus for MRP RNA cause pleiotropic human diseases, including cartilage hair hypoplasia (CHH). Here we applied CRISPR-Cas9 genome editing to disrupt the endogenous human MRP RNA locus, thereby attaining what has eluded RNAi and RNase H experiments: elimination of MRP RNA in the majority of cells. The resulting accumulation of ribosomal RNA (rRNA) precursor-analyzed by RNA fluorescent in situ hybridization (FISH), Northern blots, and RNA sequencing-implicates MRP RNA in pre-rRNA processing. Amelioration of pre-rRNA imbalance is achieved through rescue of MRP RNA levels by ectopic expression. Furthermore, affinity-purified MRP ribonucleoprotein (RNP) from HeLa cells cleaves the human pre-rRNA in vitro at at least one site used in cells, while RNP isolated from cells with CRISPR-edited MRP loci loses this activity, and ectopic MRP RNA expression restores cleavage activity. Thus, a role for RNase MRP in human pre-rRNA processing is established. As demonstrated here, targeted CRISPR disruption is a valuable tool for functional studies of essential noncoding RNAs that are resistant to RNAi and RNase H-based degradation.
MRP RNA是一种丰富的必需非编码RNA,其功能在酵母中已被提出,但在人类中尚未完全了解。MRP RNA基因组位点的突变会导致多效性人类疾病,包括软骨毛发发育不全(CHH)。在这里,我们应用CRISPR-Cas9基因组编辑来破坏内源性人类MRP RNA位点,从而实现了RNA干扰和核糖核酸酶H实验所未能达成的目标:在大多数细胞中消除MRP RNA。通过RNA荧光原位杂交(FISH)、Northern印迹和RNA测序分析,核糖体RNA(rRNA)前体的积累表明MRP RNA参与前体rRNA加工。通过异位表达挽救MRP RNA水平可改善前体rRNA失衡。此外,从HeLa细胞中亲和纯化的MRP核糖核蛋白(RNP)在体外可在细胞中使用的至少一个位点切割人类前体rRNA,而从具有CRISPR编辑的MRP位点的细胞中分离的RNP则失去了这种活性,而异位MRP RNA表达可恢复切割活性。因此,确定了核糖核酸酶MRP在人类前体rRNA加工中的作用。如此处所示,靶向CRISPR破坏是对抵抗RNA干扰和基于核糖核酸酶H降解的必需非编码RNA进行功能研究的宝贵工具。