首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Adaptive evolution of small heat shock protein/ αB-crystallin promoter activity of the blind subterranean mole rat Spalax ehrenbergi
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Adaptive evolution of small heat shock protein/ αB-crystallin promoter activity of the blind subterranean mole rat Spalax ehrenbergi

机译:隐性地下mole鼠Spalax ehrenbergi小热激蛋白/αB-晶体蛋白启动子活性的适应性进化

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摘要

Blind mole rats have degenerated subcutaneous eyes that are visually nonfunctional. In this investigation, we have compared the tissue specificity of the small heat shock protein (shsp)/αB-crystallin promoter of the mole rat superspecies, Spalax ehrenbergi, with that of the mouse. Earlier experiments showed that mouse shsp/αB-crystallin promoter/enhancer activity is high in the lens and moderate in the heart and skeletal muscle of transgenic mice. Here, we show in transgenic mouse experiments using the firefly luciferase reporter gene that, despite relatively few changes in sequence, the mole rat shsp/αB-crystallin promoter/enhancer has selectively lost lens activity after 13.5 days of embryogenesis (E13.5). The ratios of mole rat/mouse promoter activity were 0.01 for lens, 1.7 for heart, and 13.6 for skeletal muscle in 8-wk-old transgenic mice. Our data indicate that the shsp/αB-crystallin promoter/enhancer has undergone adaptive changes corresponding to the subterranean evolution of the blind mole rat. We speculate that selective pressures on metabolic economy may have contributed to these tissue-specific modifications of promoter/enhancer function during adaptation to life underground.
机译:盲mole鼠的皮下退化眼睛在视觉上无功能。在这项研究中,我们比较了the鼠超种Spalax ehrenbergi的小热激蛋白(shsp)/αB-crystallin启动子与小鼠的组织特异性。较早的实验表明,小鼠shsp /αB-crystallin启动子/增强子活性在转基因小鼠的晶状体中较高,在心脏和骨骼肌中中等。在这里,我们在使用萤火虫荧光素酶报道基因的转基因小鼠实验中显示,尽管序列变化相对较少,但在胚胎发生13.5天后(E13.5),the鼠shsp /αB-crystallin启动子/增强子选择性地丧失了晶状体活性。在8周龄的转基因小鼠中,鼠鼠/小鼠启动子活性的比率对于晶状体为0.01,对于心脏为1.7,对于骨骼肌为13.6。我们的数据表明,shsp /αB-晶状体蛋白启动子/增强子已经经历了适应性改变,与盲mole鼠的地下进化相对应。我们推测,在适应地下生命的过程中,对代谢经济的选择性压力可能促成了启动子/增强子功能的这些组织特异性修饰。

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