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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.
Abstract:
Although the 150 kDa oxygen-regulated protein (ORP150) is known as a protein induced by low oxygen tension or ischemical insult, its possible role has not been fully investigated in vivo. To investigate the intracellular function of this protein, we generated the ORP150 over-expressing transgenic mice (ORP-Tg mice) under beta-actin promoter, and established three independent lines of the transgene expressed mice. All lines invariably showed growth retardation. Over-expression of ORP150 was confirmed by western blotting in heart, brain, spleen, skeletal muscle, pancreas, lung, thymus, and kidney. To ascertain the relationship between the over-expression of the ORP150 and the growth retardation in the transgenic mice, we examined pathological changes in the transgenics. In the ORP-Tg mice, vacuolar degeneration appeared in the heart. The degeneration in the myocytes became conspicuous with advancing age. Immunostaining demonstrated ORP150 in the vacuoles of degenerating myocytes. Electron microscopical findings revealed striking development of intracellular membrane system, for example, rough endoplasmic reticula (rER), vacuoles and Golgi bodies, swelling of sarcoplasmic reticulum, and lysis of myofibrils and mitochondria. These findings indicate that ORP150 may locate in the rER and other outer compartment of ER, and that constitutive over-expression of ORP150 in the heart induces vacuolar degeneration in myocytes, resulting in growth retardation of the transgenics.
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.
