bioRxiv · 10.1101/2021.03.29.437572
A disease-linked lncRNA mutation in RNase MRP inhibits ribosome synthesis
Abstract
RMRP encodes a non-coding RNA forming the core of the RNase MRP ribonucleoprotein complex. Mutations cause Cartilage Hair Hypoplasia (CHH), characterized by skeletal abnormalities and impaired T cell activation. Yeast RNase MRP cleaves a specific site in the pre-ribosomal RNA (pre-rRNA) during ribosome synthesis. CRISPR-mediated disruption of RMRP in human cells lines caused growth arrest, with pre-rRNA accumulation. Here, we analyzed disease-relevant primary cells, showing that mutations in RMRP impair mouse T cell activation and delay pre-rRNA processing. Patient-derived human fibroblasts with CHH-linked mutations showed similar pre-rRNA processing delay. Human cells engineered with the most common CHH mutation (70AG in RMRP) show specifically impaired pre-rRNA processing, resulting in reduced mature rRNA and a reduced ratio of cytosolic to mitochondrial ribosomes. Moreover, the 70AG mutation caused a reduction in intact RNase MRP complexes. Together, these results indicate that CHH is a ribosomopathy, and the first processing-specific human disorder to be described. HighlightsO_LIMutations in RMRP lncRNA impair pre-rRNA processing and T cell activation C_LIO_LIPatient derived fibroblasts show impaired pre-rRNA processing C_LIO_LICells with the most common disease-linked mutation have specific processing defects C_LIO_LICytoplasmic ribosomes and intact RNase MRP complexes are also reduced in these cells C_LI
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Robertson, N., Shchepachev, V., Wright, D., Turowski, T. W., Spanos, C., Helwak, A., Zamoyska, R., Tollervey, D.. 2021-03-29. A disease-linked lncRNA mutation in RNase MRP inhibits ribosome synthesis. https://doi.org/10.1101/2021.03.29.437572
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