对鱼和人类肌球蛋白基因的比较分析揭示了调节元素和表达水平的进化变化
Charles Sackerson1, Vivian Garcia1, Nicole Medina1
1Biology Department, California State University Channel Islands, Camarillo, California, United States of America.
PloS one
|August 29, 2023
概括
类潜水哺乳动物具有令人惊的低肌球蛋白基因表达,与预期相反. 进化有利于蛋白质稳定,而不是高转录,以储存肌肉中的氧气.
科学领域:
- 进化生物学是进化的生物学.
- 分子遗传学 分子遗传学
- 海洋哺乳动物生理学
背景情况:
- 像鱼这样的潜水哺乳动物表现出高的骨肌肉肌球蛋白,用于储存氧气.
- 之前的假设表明,通过生理途径诱导高肌球蛋白水平的基因表达.
研究的目的:
- 为了研究一种假设,即类动物的肌球蛋白基因转录是由肌肉细胞分化机制驱动的.
- 探索潜水哺乳动物中高肌球蛋白水平的替代调节机制.
主要方法:
- 利用在分化C2C12细胞中的化酶试验来分析鱼髓球蛋白基因表达.
- 检查了鱼髓质球蛋白基因的调节元件,将它们与人类骨科进行了比较.
主要成果:
- 敏克的肌球蛋白基因表达明显较低 (8%的人类水平),在类动物和类动物中广泛共享.
- 鉴定了小基因中的新型调节元件,包括一个富G的区域和一个具有积极影响的保存E盒.
- 核心增强器的5'区域可能起到边界元素的作用,这表明监管灵活性.
结论:
- 鱼的肌球蛋白基因调节与人类不同,观察到的转录水平较低.
- 进化适应可能涉及增强的肌球蛋白稳定性,而不是仅仅增加基因转录.
- 肌球蛋白基因进化中的监管灵活性允许适应水生环境.
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