Enforced expression of oxygen-regulated protein, ORP150, induces vacuolar degeneration in mouse myocardium

Tomohiro Kobayashi1, Yasuhiko Ohta

  • 1HSP Research Institute, Kyoto Research Park, Shimogyo-ku, Kyoto 600-8813, Japan.

Transgenic Research
|March 26, 2003
PubMed

Insights

Over-expression of oxygen-regulated protein 150 (ORP150) in mice caused growth retardation and vacuolar degeneration in heart myocytes. This suggests ORP150 plays a crucial role in cardiac health and overall development.

Area of Science:

  • Molecular Biology
  • Cardiovascular Biology
  • Genetics

Background:

  • Oxygen-regulated protein 150 (ORP150) is induced by hypoxia and ischemic stress.
  • The in vivo function of ORP150 remains largely unexplored.

Purpose of the Study:

  • To investigate the intracellular function of ORP150 in vivo.
  • To determine the effects of ORP150 over-expression on mouse physiology and cardiac health.

Main Methods:

  • Generation of ORP150 over-expressing transgenic mice (ORP-Tg) under a beta-actin promoter.
  • Confirmation of ORP150 over-expression via Western blotting across multiple tissues.
  • Pathological examination of ORP-Tg mice, including cardiac tissue analysis using light microscopy, immunostaining, and electron microscopy.

Main Results:

  • All ORP-Tg mouse lines exhibited growth retardation.
  • Vacuolar degeneration was observed in the hearts of ORP-Tg mice, becoming more pronounced with age.
  • Electron microscopy revealed significant alterations in the endoplasmic reticulum, sarcoplasmic reticulum, myofibrils, and mitochondria within degenerating myocytes.
  • ORP150 was localized within vacuoles in degenerating myocytes.

Conclusions:

  • Constitutive over-expression of ORP150 in the heart leads to vacuolar degeneration of myocytes.
  • This cardiac pathology is associated with systemic growth retardation in transgenic mice.
  • ORP150 likely localizes to the endoplasmic reticulum and contributes to cellular stress responses and organelle integrity.

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