nudt7 gene depletion causes transcriptomic change in early development of zebrafish

Author:

Bhandari Sushil1,Hong KwangHeum1,Miyawaki-Kuwakado Atsuko2,Tomimatsu Kosuke2,Kim Yong-Il1,Nam In-Koo3,Sagerström Charles G4,Nakamura Mako5ORCID,Choe Seong-Kyu6

Affiliation:

1. Wonkwang University Department of Medicine, Graduate School, , 460 Iksadae-ro, Iksan, 54538 South Korea

2. Kyushu University Medical Institute of Bioregulation, , 3-1-1 Maidashi, Higashi-ku, Fukuoka, 8128582 Japan

3. Wonkwang University Institute of Brain Science, , 460 Iksadae-ro, Iksan, 54538 South Korea

4. University of Colorado Medical School Department of Pediatrics, , 13001 East 17th Place, Campus Box C290, Aurora, CO 80045, USA

5. Kyushu University Faculty of Agriculture, , 744 Motooka Nishi-Ku, Fukuoka, 8190395 Japan

6. Wonkwang University School of Medicine Department of Microbiology, , 460 Iksadae-ro, Iksan, 54538 South Korea

Abstract

Abstract The Nudt family has been identified as enzymes performing Coenzyme A to 3′5′-ADP + 4′-phospho pantetheine catalysis. The members of this family have been shown to be particularly involved in lipid metabolism, while their involvement in gene regulation through regulating transcription or mRNA metabolism has also been suggested. Here, we focused on peroxisomal NUDT7, possessing enzymatic activity similar to that of its paralog, peroxisomal NUDT19, which is involved in mRNA degradation. No reports have been published about the Nudt family in zebrafish. Our transcriptomic data showed that the Nudt family members are highly expressed around zygotic gene activation (ZGA) in developing zebrafish embryos. Therefore, we confirmed the computational prediction that the products of the nudt7 gene in zebrafish were localized in the peroxisome and highly expressed in early embryogenesis. The depletion of nudt7 genes by the CRISPR/Cas9 system did not affect development; however, it decreased the rate of transcription in ZGA. In addition, H3K27ac ChIP-seq analysis demonstrated that this decrease in transcription was correlated with the genome-wide decrease of H3K27ac level. This study suggests that peroxisomal Nudt7 functions in regulating transcription in ZGA via formation of the H3K27ac domain in active chromatin.

Publisher

Oxford University Press (OUP)

Subject

Molecular Biology,Biochemistry,General Medicine

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