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Highly efficient 5' capping of mitochondrial RNA with NAD+ and NADH by yeast and human mitochondrial RNA polymerase.


ABSTRACT: Bacterial and eukaryotic nuclear RNA polymerases (RNAPs) cap RNA with the oxidized and reduced forms of the metabolic effector nicotinamide adenine dinucleotide, NAD+ and NADH, using NAD+ and NADH as non-canonical initiating nucleotides for transcription initiation. Here, we show that mitochondrial RNAPs (mtRNAPs) cap RNA with NAD+ and NADH, and do so more efficiently than nuclear RNAPs. Direct quantitation of NAD+- and NADH-capped RNA demonstrates remarkably high levels of capping in vivo: up to ~60% NAD+ and NADH capping of yeast mitochondrial transcripts, and up to ~15% NAD+ capping of human mitochondrial transcripts. The capping efficiency is determined by promoter sequence at, and upstream of, the transcription start site and, in yeast and human cells, by intracellular NAD+ and NADH levels. Our findings indicate mtRNAPs serve as both sensors and actuators in coupling cellular metabolism to mitochondrial transcriptional outputs, sensing NAD+ and NADH levels and adjusting transcriptional outputs accordingly.

SUBMITTER: Bird JG 

PROVIDER: S-EPMC6298784 | biostudies-literature | 2018 Dec

REPOSITORIES: biostudies-literature

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Highly efficient 5' capping of mitochondrial RNA with NAD<sup>+</sup> and NADH by yeast and human mitochondrial RNA polymerase.

Bird Jeremy G JG   Basu Urmimala U   Kuster David D   Ramachandran Aparna A   Grudzien-Nogalska Ewa E   Towheed Atif A   Wallace Douglas C DC   Kiledjian Megerditch M   Temiakov Dmitry D   Patel Smita S SS   Ebright Richard H RH   Nickels Bryce E BE  

eLife 20181212


Bacterial and eukaryotic nuclear RNA polymerases (RNAPs) cap RNA with the oxidized and reduced forms of the metabolic effector nicotinamide adenine dinucleotide, NAD<sup>+</sup> and NADH, using NAD<sup>+</sup> and NADH as non-canonical initiating nucleotides for transcription initiation. Here, we show that mitochondrial RNAPs (mtRNAPs) cap RNA with NAD<sup>+</sup> and NADH, and do so more efficiently than nuclear RNAPs. Direct quantitation of NAD<sup>+</sup>- and NADH-capped RNA demonstrates rem  ...[more]

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