Pyrimidine catabolism is required to prevent the accumulation of 5-methyluridine in RNA

Author:

Gao Shangyu1,Sun Yu1,Chen Xiaoguang2ORCID,Zhu Changhua1,Liu Xiaoye3,Wang Wenlei1,Gan Lijun1,Lu Yanwu1,Schaarschmidt Frank4,Herde Marco2ORCID,Witte Claus-Peter2ORCID,Chen Mingjia1ORCID

Affiliation:

1. College of Life Sciences, Nanjing Agricultural University , Nanjing  210095, China

2. Department of Molecular Nutrition and Biochemistry of Plants, Institute of Plant Nutrition, Leibniz University Hannover , Herrenhäuser Str. 2 , D-30419 Hannover , Germany

3. Department of Criminal Science and Technology, Nanjing Forest Police College , Nanjing  210023, China

4. Department of Biostatistics, Institute of Cell Biology and Biophysics, Leibniz University Hannover , Herrenhäuser Str. 2 , D-30419 Hannover , Germany

Abstract

Abstract 5-Methylated cytosine is a frequent modification in eukaryotic RNA and DNA influencing mRNA stability and gene expression. Here we show that free 5-methylcytidine (5mC) and 5-methyl-2′-deoxycytidine are generated from nucleic acid turnover in Arabidopsis thaliana, and elucidate how these cytidines are degraded, which is unclear in eukaryotes. First CYTIDINE DEAMINASE produces 5-methyluridine (5mU) and thymidine which are subsequently hydrolyzed by NUCLEOSIDE HYDROLASE 1 (NSH1) to thymine and ribose or deoxyribose. Interestingly, far more thymine is generated from RNA than from DNA turnover, and most 5mU is directly released from RNA without a 5mC intermediate, since 5-methylated uridine (m5U) is an abundant RNA modification (m5U/U ∼1%) in Arabidopsis. We show that m5U is introduced mainly by tRNA-SPECIFIC METHYLTRANSFERASE 2A and 2B. Genetic disruption of 5mU degradation in the NSH1 mutant causes m5U to occur in mRNA and results in reduced seedling growth, which is aggravated by external 5mU supplementation, also leading to more m5U in all RNA species. Given the similarities between pyrimidine catabolism in plants, mammals and other eukaryotes, we hypothesize that the removal of 5mU is an important function of pyrimidine degradation in many organisms, which in plants serves to protect RNA from stochastic m5U modification.

Funder

Central Universities

Deutsche Forschungsgemeinschaft

International Centre for Genetic Engineering and Biotechnology

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Nanjing Agricultural University

Publisher

Oxford University Press (OUP)

Subject

Genetics

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