Overexpression of rice OsREX1-S, encoding a putative component of the core general transcription and DNA repair factor IIH, renders plant cells tolerant to cadmium- and UV-induced damage by enhancing DNA excision repair

Planta. 2014 May;239(5):1101-11. doi: 10.1007/s00425-014-2042-1. Epub 2014 Feb 23.

Abstract

Screening of 40,000 Arabidopsis FOX (Full-length cDNA Over-eXpressor gene hunting system) lines expressing rice full-length cDNAs brings us to identify four cadmium (Cd)-tolerant lines, one of which carried OsREX1-S as a transgene. OsREX1-S shows the highest levels of identity to Chlamydomonas reinhardtii REX1-S (referred to as CrREX1-S, in which REX denotes Required for Excision) and to yeast and human TFB5s (RNA polymerase II transcription factor B5), both of which are components of the general transcription and DNA repair factor, TFIIH. Transient expression of OsREX1-S consistently localized the protein to the nucleus of onion cells. The newly generated transgenic Arabidopsis plants expressing OsREX1-S reproducibly displayed enhanced Cd tolerance, confirming that the Cd-tolerance of the initial identified line was conferred solely by OsREX1-S expression. Furthermore, transgenic Arabidopsis plants expressing OsREX1-S exhibited ultraviolet-B (UVB) tolerance by reducing the amounts of cyclobutane pyrimidine dimers produced by UVB radiation. Moreover, those transgenic OsREX1-S Arabidopsis plants became resistant to bleomycin (an inducer of DNA strand break) and mitomycin C (DNA intercalating activity), compared to wild type. Our results indicate that OsREX1-S renders host plants tolerant to Cd, UVB radiation, bleomycin and mitomycin C through the enhanced DNA excision repair.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adaptation, Physiological / drug effects
  • Adaptation, Physiological / radiation effects
  • Amino Acid Sequence
  • Arabidopsis / drug effects
  • Arabidopsis / genetics
  • Arabidopsis / physiology
  • Arabidopsis / radiation effects
  • Bleomycin
  • Cadmium / toxicity*
  • Cell Nucleus / drug effects
  • Cell Nucleus / metabolism
  • Cell Nucleus / radiation effects
  • DNA Damage*
  • DNA Repair / drug effects
  • DNA Repair / radiation effects*
  • DNA, Complementary / genetics
  • Humans
  • Mitomycin
  • Molecular Sequence Data
  • Onions / cytology
  • Oryza / drug effects
  • Oryza / metabolism*
  • Oryza / radiation effects
  • Phenotype
  • Plant Cells / drug effects
  • Plant Cells / radiation effects*
  • Plant Proteins / chemistry
  • Plant Proteins / metabolism*
  • Plants, Genetically Modified
  • Protein Transport / drug effects
  • Protein Transport / radiation effects
  • Pyrimidine Dimers / metabolism
  • Saccharomyces cerevisiae / metabolism
  • Seedlings / drug effects
  • Seedlings / radiation effects
  • Sequence Homology, Amino Acid
  • Subcellular Fractions / drug effects
  • Subcellular Fractions / metabolism
  • Subcellular Fractions / radiation effects
  • Transcription Factor TFIIH / metabolism*
  • Ultraviolet Rays*

Substances

  • DNA, Complementary
  • Plant Proteins
  • Pyrimidine Dimers
  • Cadmium
  • Bleomycin
  • Transcription Factor TFIIH
  • Mitomycin