Identification of NAD-RNAs and ADPR-RNA decapping in the archaeal model organisms Sulfolobus acidocaldarius and Haloferax volcanii
Gomes-Filho, J. V.; Breuer, R.; Morales-Filloy, H. G.; Pozhydaieva, N.; Borst, A.; Paczia, N.; Soppa, J.; Höfer, K.; Jäschke, A.; Randau, L.
Show abstract
NAD is a coenzyme central to metabolism that was also found to serve as a 5-terminal cap of bacterial and eukaryotic RNA species. The presence and functionality of NAD-capped RNAs (NAD-RNAs) in the archaeal domain remain to be characterized in detail. Here, by combining LC-MS and NAD captureSeq methodology, we quantified the total levels of NAD-RNAs and determined the identity of NAD-RNAs in the two model archaea, Sulfolobus acidocaldarius and Haloferax volcanii. A complementary differential RNA-Seq (dRNA-Seq) analysis revealed that NAD transcription start sites (NAD-TSS) correlate with well-defined promoter regions and often overlap with primary transcription start sites (pTSS). The population of NAD-RNAs in the two archaeal organisms shows clear differences, with S. acidocaldarius possessing more capped small non-coding RNAs (sncRNAs) and leader sequences. The NAD-cap did not prevent 5[->]3 exonucleolytic activity by the RNase Saci-aCPSF2. To investigate enzymes that facilitate the removal of the NAD-cap, four Nudix proteins of S. acidocaldarius were screened. None of the recombinant proteins showed NAD decapping activity. Instead, the Nudix protein Saci_NudT5 showed activity after incubating NAD-RNAs at elevated temperatures. Hyperthermophilic environments promote the thermal degradation of NAD into the toxic product ADPR. Incorporating NAD into RNAs and the regulation of ADPR-RNA decapping by Saci_NudT5 is proposed to provide additional layers of maintaining stable NAD levels in archaeal cells. ImportanceThis study reports the first characterization of 5-terminally modified RNA molecules in Archaea and establishes that NAD-RNA modifications, previously only identified in the other two domains of life, are also prevalent in the archaeal model organisms Sulfolobus acidocaldarius and Haloferax volcanii. We screened for NUDIX hydrolases that could remove the NAD-RNA cap and showed that none of these enzymes removed NAD modifications, but we discovered an enzyme that hydrolyzes ADPR-RNA. We propose that these activities influence the stabilization of NAD and its thermal degradation to potentially toxic ADPR products at elevated growth temperatures.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- RNA processing machineries in Archaea: the 5’-3’ exoribonuclease aRNase J of the β-CASP family is engaged specifically with the helicase ASH-Ski2 and the 3’-5’ exoribonucleolytic RNA exosome machinery 97%
- Genome-wide ribonucleotide detection in Archaea 96%
- A 3' UTR-derived small RNA connecting nitrogen and carbon metabolism in enteric bacteria 96%
Similar papers in this journal
Similar papers in this journal
- Uncovering the temporal dynamics and regulatory networks of thermal stress response in a hyperthermophile using transcriptomics and proteomics 96%
- Lipid Anchoring Of Archaeosortase Substrates And Mid-Cell Growth In Haloarchaea 95%
- CdrS is a global transcriptional regulator influencing cell division in Haloferax volcanii 95%
Similar papers in this journal
- Purification of micrococcal nuclease (MNase) for use in ribosomal profiling of high-salinity extremophiles 96%
- Cas4/1 dual nuclease activities enable prespacer maturation and directional integration in a type I-G CRISPR-Cas system 95%
- Branched DNA Processing by a Thermostable CAS-Cas4 from Thermococcus onnurineus: Expanding Biochemical Landscape of Nuclease Activity 94%
Similar papers in this journal
- A CRISPR-based genetic screen in Bacteroides thetaiotaomicron reveals a small RNA modulator of bile susceptibility 95%
- The RRM domain-containing protein Rbp3 interacts with ribosomes and the 3' ends of mRNAs encoding photosynthesis proteins 94%
- Mfd regulates RNA polymerase association with hard-to-transcribe regions in vivo, especially those with structured RNAs 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.