SPACEFLIGHT RESULTS IN REDUCED MESSENGER-RNA LEVELS FOR TISSUE-SPECIFIC PROTEINS IN THE MUSCULOSKELETAL SYSTEM

被引:73
作者
BACKUP, P
WESTERLIND, K
HARRIS, S
SPELSBERG, T
KLINE, B
TURNER, R
机构
[1] MAYO CLIN & MAYO GRAD SCH MED,DEPT ORTHOPED SURG,ROCHESTER,MN 55905
[2] MAYO CLIN & MAYO GRAD SCH MED,DEPT BIOCHEM & MOLEC BIOL,ROCHESTER,MN 55905
来源
AMERICAN JOURNAL OF PHYSIOLOGY | 1994年 / 266卷 / 04期
关键词
DISUSE OSTEOPENIA; BONE METABOLISM; NORTHERN BLOT ANALYSIS; CALVARIAE; RAT BONE; LONG BONES; GENE EXPRESSION; WEIGHT BEARING; MATRIX PROTEINS;
D O I
10.1152/ajpendo.1994.266.4.E567
中图分类号
Q4 [生理学];
学科分类号
071003 [生理学];
摘要
The purpose of the present study in growing rats was to investigate the effects of short-term spaceflight on gene expression in bone and muscle and on cortical bone histomorphometry. Two experiments were carried out; Physiological Systems Experiments 1 and 2 were 4- and 10-day flights, respectively. Radial bone growth in the humerus was unchanged during the 4-day flight and decreased during the 10-day flight. Expression of mRNA for glyceraldehyde-S-phosphate dehydrogenase was unchanged in biceps, calvarial periosteum, and long-bone periosteum after spaceflight. Similarly, no changes in ribosomal RNA levels were observed in long-bone or calvarial periosteum after spaceflight. In contrast, spaceflight decreased steady-state mRNA levels for actin in muscle (4-day flight). Osteocalcin (both spaceflights) and the prepro-alpha 2[I] chain of type I precollagen (10-day flight) mRNA levels were decreased in long-bone and calvarial periosteum after spaceflight. These results indicate that the effects of spaceflight on the musculoskeletal system include decreased expression of some muscle- and bone-specific genes as well as decreased bone formation. Interestingly, detectable reductions in gene expression for bone matrix proteins preceded histological evidence for decreased bone formation.
引用
收藏
页码:E567 / E573
页数:7
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