Prokop Jeremy W, Schmidt Cameron, Gasper Donald, Duff Robert J, Milsted Amy, Ohkubo Takeshi, Ball Hope C, Shawkey Matthew D, Mays Herman L, Cogburn Larry A, Londraville Richard L
Integrated Biosciences Program, The University of Akron, Akron, Ohio, United States of America; Human and Molecular Genetics Center, Medical College of Wisconsin, Milwaukee, Wisconsin, United States of America.
Integrated Biosciences Program, The University of Akron, Akron, Ohio, United States of America.
PLoS One. 2014 Mar 24;9(3):e92751. doi: 10.1371/journal.pone.0092751. eCollection 2014.
Leptin is a pleiotropic protein best known for regulation of appetite and fat storage in mammals. While many leptin orthologs have been identified among vertebrates, an authentic leptin in birds has remained elusive and controversial. Here we identify leptin sequence from the Peregrine falcon, Falco peregrinus (pfleptin), and identify sequences from two other birds (mallard and zebra finch), and 'missing' vertebrates (elephant shark, alligator, Indian python, Chinese soft-shelled turtle, and coelacanth). The pattern of genes surrounding leptin (snd1, rbm28) is syntenic between the falcon and mammalian genomes. Phylogenetic analysis of all known leptin protein sequences improves our understanding of leptin's evolution. Structural modeling of leptin orthologs highlights a highly conserved hydrophobic core in the four-helix cytokine packing domain. A docked model of leptin with the leptin receptor for Peregrine falcon reveals several conserved amino acids important for the interaction and possible coevolution of leptin with its receptor. We also show for the first time, an authentic avian leptin sequence that activates the JAK-STAT signaling pathway. These newly identified sequences, structures, and tools for avian leptin and its receptor will allow elucidation of the function of these proteins in feral and domestic birds.
瘦素是一种多效性蛋白质,在哺乳动物中以调节食欲和脂肪储存而闻名。虽然在脊椎动物中已鉴定出许多瘦素直系同源物,但鸟类中的真正瘦素一直难以捉摸且存在争议。在这里,我们鉴定了游隼(Falco peregrinus)的瘦素序列(pfleptin),并鉴定了另外两种鸟类(绿头鸭和斑胸草雀)以及“缺失的”脊椎动物(象鲨、短吻鳄、印度蟒、中华鳖和腔棘鱼)的序列。瘦素周围的基因(snd1、rbm28)模式在游隼和哺乳动物基因组之间是同线的。对所有已知瘦素蛋白序列的系统发育分析增进了我们对瘦素进化的理解。瘦素直系同源物的结构建模突出了四螺旋细胞因子堆积结构域中高度保守的疏水核心。游隼瘦素与其受体的对接模型揭示了几个对瘦素与其受体相互作用及可能的共同进化很重要的保守氨基酸。我们还首次展示了一种能激活JAK-STAT信号通路的真正鸟类瘦素序列。这些新鉴定的鸟类瘦素及其受体的序列、结构和工具将有助于阐明这些蛋白质在野生和家养鸟类中的功能。