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Am J Physiol Regul Integr Comp Physiol 296: R558-R566, 2009. First published December 17, 2008; doi:10.1152/ajpregu.90439.2008
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ENDOCRINE PHYSIOLOGY AND METABOLISM

Structural, gene expression, and functional analysis of the fugu (Takifugu rubripes) insulin-like growth factor binding protein-4 gene

Mingyu Li,1 Yun Li,1 Ling Lu,1 Xianlei Wang,1 Qingli Gong,2 and Cunming Duan1,3

1Laboratory of Molecular Medicine, School of Medicine and Pharmacy; 2Department of Aquiculture, School of Fisheries, Ocean University of China, Qingdao, Shandong, China; and 3Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, Michigan

Submitted 21 May 2008 ; accepted in final form 15 December 2008

The insulin-like growth factor (IGF) signaling pathway is a conserved pathway that regulates animal development, growth, metabolism, reproduction, and aging. The biological actions of IGFs are modulated by IGF-binding proteins (IGFBPs). Although the structure and function of fish IGFBP-1, -2, -3, and -5 have been elucidated, there is currently no report on the full-length structure of a fish IGFBP-4 nor its biological action. In this study, we cloned and characterized the IGFBP-4 gene from fugu. Sequence comparison, phylogenetic, and synteny analyses indicate that its chromosomal location, gene, and protein structure are similar to its mammalian orthologs. Fugu IGFBP-4 mRNA was easily detectable in all adult tissues examined with the exception of spleen. Older animals tended to have higher levels of IGFBP-4 mRNA in the muscle and eyes compared with younger animals. Starvation resulted in significant increases in IGFBP-4 mRNA abundance in the muscle, liver, gallbladder, and brain. Overexpression of fugu and human IGFBP-4 in zebrafish embryos caused a significant decrease in body size and somite number, suggesting that fugu IGFBP-4 inhibits growth and development, possibly by binding to IGFs and inhibiting their binding to the IGF receptors. These results provide new information about the structural and functional conservation, expression patterns, and physiological regulation of the IGFBP-4 gene in a teleost fish.

teleost; gene expression; growth



Address for reprint requests and other correspondence: C. Duan, Department of Molecular, Cellular, and Developmental Biology, University of Michigan, Ann Arbor, Michigan 48109 (e-mail: cduan{at}umich.edu)







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