Department of Biomolecular Chemistry, Institute for Molecules and Materials (IMM), Radboud University, Nijmegen, The Netherlands.
RNA Biol. 2022;19(1):305-312. doi: 10.1080/15476286.2022.2027659. Epub 2021 Dec 31.
RNase MRP is a ribonucleoprotein complex involved in the endoribonucleolytic cleavage of different RNAs. Mutations in the RNA component of the RNP are the cause of cartilage hair hypoplasia. Patients with cartilage hair hypoplasia are characterized by skeletal dysplasia. Biochemical purification of RNase MRP is desired to be able to study its biochemical function, composition and activity in both healthy and disease situations. Due to the high similarity with RNase P, a method to specifically isolate the RNase MRP complex is currently lacking. By fusing a streptavidin-binding RNA aptamer, the S1m-aptamer, to the RNase MRP RNA we have been able to compare the relative expression levels of wildtype and mutant MRP RNAs. Moreover, we were able to isolate active RNase MRP complexes. We observed that mutant MRP RNAs are expressed at lower levels and have lower catalytic activity compared to the wildtype RNA. The observation that a single nucleotide substitution at position 40 in the P3 domain but not in other domains of RNase MRP RNA severely reduced the binding of the Rpp25 protein subunit confirmed that the P3 region harbours the main binding site for this protein. Altogether, this study shows that the RNA aptamer tagging approach can be used to identify RNase MRP substrates, but also to study the effect of mutations on MRP RNA expression levels and RNase MRP composition and endoribonuclease activity.
核糖核酸酶 MRP 是一种参与不同 RNA 内切核酸酶切割的核糖核蛋白复合物。RNP 中 RNA 成分的突变是软骨毛发发育不良的原因。患有软骨毛发发育不良的患者表现出骨骼发育不良。生化纯化核糖核酸酶 MRP 是为了能够研究其在健康和疾病情况下的生化功能、组成和活性。由于与 RNase P 的高度相似性,目前缺乏一种专门分离 RNase MRP 复合物的方法。通过将链霉亲和素结合的 RNA 适体 S1m-aptamer 融合到 RNase MRP RNA 上,我们已经能够比较野生型和突变型 MRP RNA 的相对表达水平。此外,我们还能够分离出具有活性的 RNase MRP 复合物。我们观察到突变型 MRP RNA 的表达水平较低,且催化活性低于野生型 RNA。观察到在 P3 结构域的第 40 位的单个核苷酸取代而不是在 RNase MRP RNA 的其他结构域中严重降低了 Rpp25 蛋白亚基的结合,证实了 P3 区域是该蛋白的主要结合位点。总之,这项研究表明,RNA 适体标记方法可用于鉴定核糖核酸酶 MRP 底物,还可研究突变对 MRP RNA 表达水平以及核糖核酸酶 MRP 组成和内切核酸酶活性的影响。