Ogawa Tomohisa, Shirai Tsuyoshi, Shionyu-Mitsuyama Clara, Yamane Takashi, Kamiya Hisao, Muramoto Koji
Department of Biomolecular Science, Graduate School of Life Sciences, Tohoku University, Sendai 981-8555, Japan.
Glycoconj J. 2002;19(7-9):451-8. doi: 10.1023/B:GLYC.0000014074.38755.1d.
Many cases of accelerated evolution driven by positive Darwinian selection are identified in the genes of venomous and reproductive proteins. This evolutional phenomenon might have important consequences in their gene-products' functions, such as multiple specific toxins for quick immobilization of the prey and the establishment of barriers to fertilization that might lead to speciation, and in the molecular evolution of novel genes. Recently, we analyzed the molecular evolution of two galectins isolated from the skin mucus of conger eel (Conger myriaster), named congerins I and II, by cDNA cloning and X-ray structural analysis, and we found that they have evolved in the rapid adaptive manner to emergence of a new structure including strand-swapping and a unique new ligand-binding site. In this review article we summarize and discuss the molecular evolution, especially the rapid adaptive evolution, and the structure-function relationships of conger eel galectins.
许多由正向达尔文选择驱动的加速进化案例在有毒和生殖蛋白的基因中被发现。这种进化现象可能对其基因产物的功能产生重要影响,例如用于快速使猎物 immobilization 的多种特定毒素以及可能导致物种形成的受精屏障的建立,以及在新基因的分子进化中。最近,我们通过 cDNA 克隆和 X 射线结构分析,分析了从康吉鳗(Conger myriaster)皮肤黏液中分离出的两种半乳糖凝集素(命名为康吉鳗凝集素 I 和 II)的分子进化,我们发现它们以快速适应的方式进化以形成包括链交换和独特新配体结合位点的新结构。在这篇综述文章中,我们总结并讨论了康吉鳗半乳糖凝集素的分子进化,特别是快速适应性进化,以及结构 - 功能关系。