Wood-Charlson Elisha M, Weis Virginia M
Department of Oceanography, University of Hawai'i at Manoa, Honolulu, 96822, United States.
Dev Comp Immunol. 2009 Aug;33(8):881-9. doi: 10.1016/j.dci.2009.01.008. Epub 2009 Feb 21.
C-type lectins (CTLs) are involved in cell-cell adhesion, recognition, and innate immunity in higher vertebrates, but little is known about CTLs in basal metazoans. The recent sequencing of the cnidarian Nematostella vectensis genome allowed us to explore the CTL-like gene family at the base of metazoan evolution. Sixty-seven predicted CTLs, with a total of 92 putative C-type lectin domains (CTLDs), were classified according to number of CTLDs present and their association with other protein domains in the CTL. Conserved residues in the glycan-binding pocket suggest that approximately half of the CTLDs retain glycan-binding function. Phylogenetic analysis of N. vectensis CTLDs with respect to other model invertebrates and humans indicates N. vectensis CTLD sequences more closely resemble vertebrate CTLDs. This study provides a N. vectensis CTL database that can be used for further research on the evolution of cnidarian CTLs and the role of CTLs in cnidarian innate immunity.
C型凝集素(CTLs)参与高等脊椎动物的细胞间黏附、识别和天然免疫,但关于基础后生动物中的CTLs却知之甚少。刺胞动物星状海葵(Nematostella vectensis)基因组的近期测序使我们能够在动物进化的基部探索类CTL基因家族。根据存在的C型凝集素结构域(CTLDs)数量及其与CTL中其他蛋白质结构域的关联,对67个预测的CTLs(共92个推定的C型凝集素结构域)进行了分类。聚糖结合口袋中的保守残基表明,约一半的CTLDs保留了聚糖结合功能。对星状海葵CTLDs与其他模式无脊椎动物和人类进行的系统发育分析表明,星状海葵CTLD序列与脊椎动物CTLDs更为相似。本研究提供了一个星状海葵CTL数据库,可用于进一步研究刺胞动物CTLs的进化以及CTLs在刺胞动物天然免疫中的作用。