Human TRUB1 is a highly conserved pseudouridine synthase responsible for the formation of Ψ55 in mitochondrial tRNAAsn, tRNAGln, tRNAGlu and tRNAPro

Author:

Jia Zidong12ORCID,Meng Feilong12,Chen Hui2ORCID,Zhu Gao2,Li Xincheng2,He Yunfan2,Zhang Liyao2ORCID,He Xiao2,Zhan Huisen2,Chen Mengquan3,Ji Yanchun12,Wang Meng12,Guan Min-Xin1245ORCID

Affiliation:

1. Division of Medical Genetics and Genomics, The Children's Hospital, Zhejiang University School of Medicine and National Clinical Research Center for Child Health , Hangzhou , Zhejiang , China

2. Institute of Genetics, Zhejiang University School of Medicine , Hangzhou , Zhejiang , China

3. Department of Lab Medicine, Wenzhou Hospital of Traditional Chinese Medicine , Wenzhou , Zhejiang , China

4. Zhejiang Provincial Key Laboratory of Genetic and Developmental Disorders , Hangzhou , Zhejiang , China

5. Joint Institute of Genetics and Genome Medicine between Zhejiang University and University of Toronto , Hangzhou , Zhejiang , China

Abstract

Abstract Pseudouridine (Ψ) at position 55 in tRNAs plays an important role in their structure and function. This modification is catalyzed by TruB/Pus4/Cbf5 family of pseudouridine synthases in bacteria and yeast. However, the mechanism of TRUB family underlying the formation of Ψ55 in the mammalian tRNAs is largely unknown. In this report, the CMC/reverse transcription assays demonstrated the presence of Ψ55 in the human mitochondrial tRNAAsn, tRNAGln, tRNAGlu, tRNAPro, tRNAMet, tRNALeu(UUR) and tRNASer(UCN). TRUB1 knockout (KO) cell lines generated by CRISPR/Cas9 technology exhibited the loss of Ψ55 modification in mitochondrial tRNAAsn, tRNAGln, tRNAGlu and tRNAPro but did not affect other 18 mitochondrial tRNAs. An in vitro assay revealed that recombinant TRUB1 protein can catalyze the efficient formation of Ψ55 in tRNAAsn and tRNAGln, but not in tRNAMet and tRNAArg. Notably, the overexpression of TRUB1 cDNA reversed the deficient Ψ55 modifications in these tRNAs in TRUB1KO HeLa cells. TRUB1 deficiency affected the base-pairing (18A/G-Ψ55), conformation and stability but not aminoacylation capacity of these tRNAs. Furthermore, TRUB1 deficiency impacted mitochondrial translation and biogenesis of oxidative phosphorylation system. Our findings demonstrated that human TRUB1 is a highly conserved mitochondrial pseudouridine synthase responsible for the Ψ55 modification in the mitochondrial tRNAAsn, tRNAGln, tRNAGlu and tRNAPro.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Zhejiang Provincial Public Welfare Technology Applied Research Projects

Zhejiang Provincial Health Technology Project Commission

Publisher

Oxford University Press (OUP)

Subject

Genetics

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