Concerted modification of nucleotides at functional centers of the ribosome revealed by single-molecule RNA modification profiling

Author:

Bailey Andrew D1ORCID,Talkish Jason2ORCID,Ding Hongxu13,Igel Haller2,Duran Alejandra4,Mantripragada Shreya5ORCID,Paten Benedict1,Ares Manuel2ORCID

Affiliation:

1. Department of Biomolecular Engineering and Santa Cruz Genomics Institute, University of California, Santa Cruz

2. RNA Center and Department of Molecular, Cell & Developmental Biology, University of California, Santa Cruz

3. Department of Pharmacy Practice & Science, College of Pharmacy, University of Arizona

4. Colegio Santa Francisca Romana

5. Monta Vista High School

Abstract

Nucleotides in RNA and DNA are chemically modified by numerous enzymes that alter their function. Eukaryotic ribosomal RNA (rRNA) is modified at more than 100 locations, particularly at highly conserved and functionally important nucleotides. During ribosome biogenesis, modifications are added at various stages of assembly. The existence of differently modified classes of ribosomes in normal cells is unknown because no method exists to simultaneously evaluate the modification status at all sites within a single rRNA molecule. Using a combination of yeast genetics and nanopore direct RNA sequencing, we developed a reliable method to track the modification status of single rRNA molecules at 37 sites in 18 S rRNA and 73 sites in 25 S rRNA. We use our method to characterize patterns of modification heterogeneity and identify concerted modification of nucleotides found near functional centers of the ribosome. Distinct, undermodified subpopulations of rRNAs accumulate upon loss of Dbp3 or Prp43 RNA helicases, suggesting overlapping roles in ribosome biogenesis. Modification profiles are surprisingly resistant to change in response to many genetic and acute environmental conditions that affect translation, ribosome biogenesis, and pre-mRNA splicing. The ability to capture single-molecule RNA modification profiles provides new insights into the roles of nucleotide modifications in RNA function.

Funder

National Institute of General Medical Sciences

National Human Genome Research Institute

NIH Office of the Director

National Heart, Lung, and Blood Institute

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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