Ohtsuki Takashi, Otsuki Mariko, Murakami Yousuke, Maekawa Tetsuya, Yamamoto Takashi, Akasaka Koji, Takeuchi Sakae, Takahashi Sumio
Department of Biology, Faculty of Science, Okayama University, Japan.
Zoolog Sci. 2005 Sep;22(9):1011-21. doi: 10.2108/zsj.22.1011.
Insulin-like growth factor-I (IGF-I) gene generates several IGF-I mRNA variants by alternative splicing. Two promoters are present in mouse IGF-I gene. Each promoter encodes two IGF-I mRNA variants (IGF-IA and IGF-IB mRNAs). Variants differ by the presence (IGF-IB) or absence (IGF-IA) of a 52-bp insert in the E domain-coding region. Functional differences among IGF-I mRNAs, and regulatory mechanisms for alternative splicing of IGF-I mRNA are not yet known. We analyzed the expression of mouse IGF-IA and IGF-IB mRNAs using SYBR Green real-time RT-PCR. In the liver, IGF-I mRNA expression increased from 10 days of age to 45 days. In the uterus and ovary, IGF-I mRNA expression increased from 21 days of age, and then decreased at 45 days. In the kidney, IGF-I mRNA expression decreased from 10 days of age. IGF-IA mRNA levels were higher than IGF-IB mRNA levels in all organs examined. Estradiol-17beta (E2) treatment in ovariectomized mice increased uterine IGF-IA and IGF-IB mRNA levels from 3 hr after injection, and highest levels for both mRNAs were detected at 6 hr, and relative increase was greater for IGF-IB mRNA than for IGF-IA mRNA. These results suggest that expression of IGF-I mRNA variants is regulated in organ-specific and age-dependent manners, and estrogen is involved in the change of IGF-I mRNA variant expression.
胰岛素样生长因子-I(IGF-I)基因通过可变剪接产生多种IGF-I mRNA变体。小鼠IGF-I基因中有两个启动子。每个启动子编码两种IGF-I mRNA变体(IGF-IA和IGF-IB mRNA)。这些变体的区别在于E结构域编码区中是否存在一个52个碱基对的插入片段(IGF-IB有,IGF-IA没有)。IGF-I mRNA之间的功能差异以及IGF-I mRNA可变剪接的调控机制尚不清楚。我们使用SYBR Green实时逆转录PCR分析了小鼠IGF-IA和IGF-IB mRNA的表达。在肝脏中,IGF-I mRNA表达从10日龄到45日龄增加。在子宫和卵巢中,IGF-I mRNA表达从21日龄开始增加,然后在45日龄时下降。在肾脏中,IGF-I mRNA表达从10日龄开始下降。在所检查的所有器官中,IGF-IA mRNA水平均高于IGF-IB mRNA水平。对去卵巢小鼠进行雌二醇-17β(E2)处理后,注射后3小时子宫内IGF-IA和IGF-IB mRNA水平升高,两种mRNA在6小时时检测到最高水平,且IGF-IB mRNA的相对增加幅度大于IGF-IA mRNA。这些结果表明,IGF-I mRNA变体的表达以器官特异性和年龄依赖性方式受到调控,雌激素参与了IGF-I mRNA变体表达的变化。