Crespi Erica J, Denver Robert J
Department of Molecular, Cellular, and Developmental Biology, University of Michigan, 830 North University Avenue, Ann Arbor, MI 48109-1048, USA.
Proc Natl Acad Sci U S A. 2006 Jun 27;103(26):10092-7. doi: 10.1073/pnas.0507519103. Epub 2006 Jun 16.
Leptin, the protein product of the obese (ob) gene, is a type-I cytokine hormone secreted by fat that is integral to food intake regulation and influences almost every physiological system in juvenile and adult mammals. Since the identification of leptin in the mouse in 1994, biologists have searched for orthologous genes in other species with limited success. In this article, we report the identification and functional characterization of leptin and leptin receptor (LR) in Xenopus. Despite low amino acid sequence similarity to mammalian leptins ( approximately 35%) the frog protein has a nearly identical predicted tertiary structure and can activate the frog and mouse LRs in vitro. We showed that recombinant frog leptin (rxLeptin) is a potent anorexigen in frogs, as it is in mammals, but this response does not develop until midprometamorphosis. However, during early prometamorphosis, exogenous rxLeptin induced growth and development of the hind limb, where LR mRNA is expressed. The rxLeptin also stimulated cell proliferation in cultured hind limbs from early prometamorphic tadpoles, as measured by [(3)H]thymidine uptake. These findings are evidence that leptin can influence limb growth and differentiation during early development. Furthermore, the isolation and characterization of leptin and its receptor in a nonamniote provides an essential foundation for elucidating the structural and functional evolution of this important hormone.
瘦素是肥胖(ob)基因的蛋白质产物,是一种由脂肪分泌的I型细胞因子激素,对食物摄入调节至关重要,并影响幼年和成年哺乳动物的几乎每个生理系统。自1994年在小鼠中鉴定出瘦素以来,生物学家一直在其他物种中寻找直系同源基因,但成效有限。在本文中,我们报告了非洲爪蟾中瘦素和瘦素受体(LR)的鉴定及其功能特征。尽管与哺乳动物瘦素的氨基酸序列相似性较低(约35%),但青蛙蛋白具有几乎相同的预测三级结构,并且在体外可以激活青蛙和小鼠的LR。我们表明,重组青蛙瘦素(rxLeptin)在青蛙中与在哺乳动物中一样,是一种有效的食欲抑制剂,但这种反应直到变态中期才会出现。然而,在变态前期早期,外源性rxLeptin诱导了后肢的生长和发育,后肢中表达LR mRNA。通过[(3)H]胸苷摄取测量,rxLeptin还刺激了变态前期早期蝌蚪培养后肢中的细胞增殖。这些发现证明瘦素在早期发育过程中可以影响肢体的生长和分化。此外,在非羊膜动物中分离和鉴定瘦素及其受体为阐明这种重要激素的结构和功能进化提供了重要基础。