JOURNAL ARTICLE

The radiation-induced polymerization of octadecyl acrylate multilayers by electron beam irradiation

Abstract

Mutations in human mitochondrial isoleucine tRNA (hs mt tRNA(Ile)) are associated with cardiomyopathy and opthalmoplegia. A recent study showed that opthalmoplegia-related mutations gave rise to severe decreases in aminoacylation efficiencies and that the defective mutant tRNAs were effective inhibitors of aminoacylation of the wild-type substrate. The results suggested that the effectiveness of the mutations was due in large part to an inherently fragile mitochondrial tRNA structure. Here, we investigate mutant tRNAs associated with cardiomyopathy, and a series of rationally designed second-site substitutions introduced into both opthalmoplegia- and cardiomyopathy-related mutant tRNAs. A source of structural fragility was uncovered. An inherently unstable T-stem appears susceptible to misalignments. This susceptibility sensitizes both domains of the L-shaped tRNA structure to base substitutions that are deleterious. Thus, the fragile T-stem makes the structure of this human mitochondrial tRNA particularly vulnerable to local and distant mutations.

Keywords:
Irradiation Polymerization Materials science Acrylate Radiation Cathode ray Electron beam processing Chemistry Photochemistry Chemical engineering Radiochemistry Polymer chemistry Polymer Electron Optics Monomer Composite material Physics Nuclear physics Engineering

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Topics

Photopolymerization techniques and applications
Physical Sciences →  Chemistry →  Organic Chemistry
Polymer Nanocomposite Synthesis and Irradiation
Physical Sciences →  Materials Science →  Polymers and Plastics
Radiation Effects and Dosimetry
Life Sciences →  Agricultural and Biological Sciences →  Food Science

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