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The inescapable effects of ribosomes on in-cell NMR spectroscopy and the implications for regulation of biological activity

  • SUNY Albany

Research output: Contribution to journalReview articlepeer-review

5 Scopus citations

Abstract

The effects of RNA on in-cell NMR spectroscopy and ribosomes on the kinetic activity of several metabolic enzymes are reviewed. Quinary interactions between labelled target proteins and RNA broaden in-cell NMR spectra yielding apparent megadalton molecular weights in-cell. The in-cell spectra can be resolved by using cross relaxation-induced polarization transfer (CRINEPT), heteronuclear multiple quantum coherence (HMQC), transverse relaxation-optimized, NMR spectroscopy (TROSY). The effect is reproduced in vitro by using reconstituted total cellular RNA and purified ribosome preparations. Furthermore, ribosomal binding antibiotics alter protein quinary structure through protein-ribosome and protein-mRNA-ribosome interactions. The quinary interactions of Adenylate kinase, Thymidylate synthase and Dihydrofolate reductase alter kinetic properties of the enzymes. The results demonstrate that ribosomes may specifically contribute to the regulation of biological activity.

Original languageEnglish
Article number1297
JournalInternational Journal of Molecular Sciences
Volume20
Issue number6
DOIs
StatePublished - Mar 2 2019

Keywords

  • Adenylate kinase
  • Cross-correlated relaxation
  • Dihydrofolate reductase
  • Enzyme activity
  • Enzyme kinetics
  • NMR spectroscopy
  • Protein interactions
  • Protein structure-function
  • Ribosome
  • Thioredoxin
  • Thymidylate synthase
  • mRNA
  • rRNA

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