SI-MOIRAI: a new method to identify and quantify the metabolic fate of nucleotides

Author:

Ikeda Yoshiki12,Hirayama Akiyoshi3,Kofuji Satoshi14ORCID,Hirota Yoshihisa15,Kamata Ryo3,Osaka Natsuki3,Fujii Yuki6,Sasaki Mika1,Ikeda Satsuki3,Smith Eric P1,Bachoo Robert78,Soga Tomoyoshi3,Sasaki Atsuo T13910ORCID

Affiliation:

1. Division of Hematology and Oncology, Department of Internal Medicine, University of Cincinnati College of Medicine, Vontz Center #1328, 3125 Eden Ave., Cincinnati, OH 45267-0508, USA

2. Department of Molecular Genetics, Institute of Biomedical Science, Kansai Medical University, 2-5-1 Shinmachi, Hirakata, Osaka 573-1010, Japan

3. Institute for Advanced Biosciences, Keio University, 246-2 Mizukami, Kakuganji, Tsuruoka 997-0052, Japan

4. Department of Developmental and Regenerative Biology, Medical Research Institute, Tokyo Medical and Dental University (TMDU), 1-5-45 Yushima, Bunkyo-Ku, Tokyo 113-8510, Japan

5. Department of Bioscience and Engineering, College of Systems Engineering and Science, Shibaura Institute of Technology, 307 Fukasaku, Minuma-Ku, Saitama 337-8570, Japan

6. Graduate School of Science, Osaka City University, 3-3-138 Sugimoto, Sumiyoshi-ku, Osaka 558-8585, Japan

7. Department of Internal Medicine; Harold C. Simmons Comprehensive Cancer Center; Annette G. Strauss Center for Neuro-Oncology, University of Texas Southwestern Medical Center, 5303 Harry Hines Blvd., Dallas, TX 75390, USA

8. Department of Neurology and Neurotherapeutics, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, TX 75390, USA

9. Department of Cancer Biology, University of Cincinnati College of Medicine, 3230 Eden Ave., Cincinnati, OH 45267, USA

10. Department of Neurosurgery, Brain Tumor Center at UC Gardner Neuroscience Institute, 3230 Eden Ave., Cincinnati, OH 45267, USA

Abstract

Abstract Since the discovery of nucleotides over 100 years ago, extensive studies have revealed the importance of nucleotides for homeostasis, health and disease. However, there remains no established method to investigate quantitatively and accurately intact nucleotide incorporation into RNA and DNA. Herein, we report a new method, Stable-Isotope Measure Of Influxed Ribonucleic Acid Index (SI-MOIRAI), for the identification and quantification of the metabolic fate of ribonucleotides and their precursors. SI-MOIRAI, named after Greek goddesses of fate, combines a stable isotope-labelling flux assay with mass spectrometry to enable quantification of the newly synthesized ribonucleotides into r/m/tRNA under a metabolic stationary state. Using glioblastoma (GBM) U87MG cells and a patient-derived xenograft (PDX) GBM mouse model, SI-MOIRAI analyses showed that newly synthesized GTP was particularly and disproportionally highly utilized for rRNA and tRNA synthesis but not for mRNA synthesis in GBM in vitro and in vivo. Furthermore, newly synthesized pyrimidine nucleotides exhibited a significantly lower utilization rate for RNA synthesis than newly synthesized purine nucleotides. The results reveal the existence of discrete pathways and compartmentalization of purine and pyrimidine metabolism designated for RNA synthesis, demonstrating the capacity of SI-MOIRAI to reveal previously unknown aspects of nucleotide biology.

Funder

Promotion of Science

KAKENHI

Japan Science and Technology

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

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