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1 September 2005 Organ-Specific and Age-Dependent Expression of Insulin-like Growth Factor-I (IGF-I) mRNA Variants: IGF-IA and IB mRNAs in the Mouse
Takashi Ohtsuki, Mariko Otsuki, Yousuke Murakami, Tetsuya Maekawa, Takashi Yamamoto, Koji Akasaka, Sakae Takeuchi, Sumio Takahashi
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Abstract

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-17β (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.

Takashi Ohtsuki, Mariko Otsuki, Yousuke Murakami, Tetsuya Maekawa, Takashi Yamamoto, Koji Akasaka, Sakae Takeuchi, and Sumio Takahashi "Organ-Specific and Age-Dependent Expression of Insulin-like Growth Factor-I (IGF-I) mRNA Variants: IGF-IA and IB mRNAs in the Mouse," Zoological Science 22(9), 1011-1021, (1 September 2005). https://doi.org/10.2108/zsj.22.1011
Received: 9 June 2005; Accepted: 1 August 2005; Published: 1 September 2005
KEYWORDS
estradiol
insulin like growth factor-I (IGF-I)
Mouse
uterus
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