Itoh Nobuyuki, Ornitz David M
Department of Genetic Biochemistry, Kyoto University Graduate School of Pharmaceutical Sciences, Sakyo, Kyoto, Japan.
Dev Dyn. 2008 Jan;237(1):18-27. doi: 10.1002/dvdy.21388.
Fibroblast Growth Factors (FGFs) are polypeptides with diverse activities in development and physiology. The mammalian Fgf family can be divided into the intracellular Fgf11/12/13/14 subfamily (iFGFs), the hormone-like Fgf15/21/23 subfamily (hFGFs), and the canonical Fgf subfamilies, including Fgf1/2/5, Fgf3/4/6, Fgf7/10/22, Fgf8/17/18, and Fgf9/16/20. However, all Fgfs are evolutionarily related. We propose that an Fgf13-like gene is the ancestor of the iFgf subfamily and the most likely evolutionary ancestor of the entire Fgf family. Potential ancestors of the canonical and hFgf subfamilies, Fgf4-, Fgf5-, Fgf8-, Fgf9-, Fgf10-, and Fgf15-like, appear to have derived from an Fgf13-like ancestral gene. Canonical FGFs function in a paracrine manner, while hFGFs function in an endocrine manner. We conclude that the ancestral Fgfs for these subfamilies acquired this functional diversity before the evolution of vertebrates. During the evolution of early vertebrates, the Fgf subfamilies further expanded to contain three or four members in each subfamily.
成纤维细胞生长因子(FGFs)是在发育和生理学中具有多种活性的多肽。哺乳动物的Fgf家族可分为细胞内Fgf11/12/13/14亚家族(iFGFs)、激素样Fgf15/21/23亚家族(hFGFs)以及经典Fgf亚家族,包括Fgf1/2/5、Fgf3/4/6、Fgf7/10/22、Fgf8/17/18和Fgf9/16/20。然而,所有Fgfs在进化上都是相关的。我们提出,一个类似Fgf13的基因是iFgf亚家族的祖先,也是整个Fgf家族最可能的进化祖先。经典Fgf亚家族和hFgf亚家族的潜在祖先,如Fgf4-、Fgf5-、Fgf8-、Fgf9-、Fgf10-和Fgf15-样基因,似乎都源自一个类似Fgf13的祖先基因。经典FGFs以旁分泌方式发挥作用,而hFGFs以内分泌方式发挥作用。我们得出结论,这些亚家族的祖先Fgfs在脊椎动物进化之前就获得了这种功能多样性。在早期脊椎动物的进化过程中,Fgf亚家族进一步扩展,每个亚家族包含三个或四个成员。
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