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Hidden features of NAD-RNA epitranscriptome in Drosophila life cycle.


ABSTRACT: Nicotinamide adenine dinucleotide (NAD), a nucleotide-containing metabolite, can be incorporated into the RNA 5'-terminus to result in NAD-capped RNA (NAD-RNA). Since NAD has been heightened as one of the most essential metabolites in cells, its linkage to RNA represents a critical but poorly studied modification at the epitranscriptomic level. Here, we design a highly sensitive method, DO-seq, to capture NAD-RNAs. Using Drosophila, we identify thousands of previously unexplored NAD-RNAs and their dynamics in the fly life cycle, from embryo to adult. We show the evidence that chromosomal clustering might be the structural basis by which co-expression can couple with NAD capping on physically and functionally linked genes. Furthermore, we note that NAD capping of cuticle genes inversely correlates with their gene expression. Combined, we propose NAD-RNA epitranscriptome as a hidden layer of regulation that underlies biological processes. DO-seq empowers the identification of NAD-capped RNAs, facilitating functional investigation into this modification.

SUBMITTER: Ge S 

PROVIDER: S-EPMC10775904 | biostudies-literature | 2024 Jan

REPOSITORIES: biostudies-literature

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Hidden features of NAD-RNA epitranscriptome in <i>Drosophila</i> life cycle.

Ge Shuwen S   Wang Xueting X   Wang Yingqin Y   Dong Minghui M   Li Dean D   Niu Kongyan K   Wang Tongyao T   Liu Rui R   Zhao Chao C   Liu Nan N   Zhong Ming M  

iScience 20231202 1


Nicotinamide adenine dinucleotide (NAD), a nucleotide-containing metabolite, can be incorporated into the RNA 5'-terminus to result in NAD-capped RNA (NAD-RNA). Since NAD has been heightened as one of the most essential metabolites in cells, its linkage to RNA represents a critical but poorly studied modification at the epitranscriptomic level. Here, we design a highly sensitive method, DO-seq, to capture NAD-RNAs. Using <i>Drosophila</i>, we identify thousands of previously unexplored NAD-RNAs  ...[more]

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