Centro de Análises Proteômicas e Bioquímicas, Programa de Pós-Graduação em Ciências Genômicas e Biotecnologia, Universidade Católica de Brasília, Brasília-DF, Brazil.
Peptides. 2012 Nov;38(1):127-36. doi: 10.1016/j.peptides.2012.07.025. Epub 2012 Sep 4.
Lectins are proteins with ability to bind reversibly and non-enzymatically to a specific carbohydrate. They are involved in numerous biological processes and show enormous biotechnological potential. Among plant lectins, the hevein domain is extremely common, being observed in several kinds of lectins. Moreover, this domain is also observed in an important class of antimicrobial peptides named hevein-like peptides. Due to higher cysteine residues conservation, hevein-like peptides could be mined among the sequence databases. By using the pattern CX(4,5)CC[GS]X(2)GXCGX[GST]X(2,3)[FWY]C[GS]X[AGS] novel hevein-like peptide precursors were found from three different plants: Oryza sativa, Vitis vinifera and Selaginella moellendorffii. In addition, an hevein-like peptide precursor from the phytopathogenic fungus Phaeosphaeria nodorum was also identified. The molecular models indicate that they have the same scaffold as others, composed of an antiparallel β-sheet and short helices. Nonetheless, the fungal hevein-like peptide probably has a different disulfide bond pattern. Despite this difference, the complexes between peptide and N,N,N-triacetylglucosamine are stable, according to molecular dynamics simulations. This is the first report of an hevein-like peptide from an organism outside the plant kingdom. The exact role of an hevein-like peptide in the fungal biology must be clarified, while in plants they are clearly involved in plant defense. In summary, data here reported clear shows that an in silico strategy could lead to the identification of novel hevein-like peptides that could be used as biotechnological tools in the fields of health and agribusiness.
凝集素是能够可逆且非酶促地与特定碳水化合物结合的蛋白质。它们参与众多生物过程,并表现出巨大的生物技术潜力。在植物凝集素中,海豆球蛋白结构域极为常见,存在于多种凝集素中。此外,该结构域也存在于一类重要的抗菌肽——海豆球蛋白样肽中。由于较高的半胱氨酸残基保守性,海豆球蛋白样肽可以从序列数据库中挖掘。通过使用模式 CX(4,5)CC[GS]X(2)GXCGX[GST]X(2,3)[FWY]C[GS]X[AGS],从三种不同的植物:水稻、葡萄和卷柏中发现了新型海豆球蛋白样肽前体。此外,还从植物病原菌禾旋孢腔菌中鉴定出一种海豆球蛋白样肽前体。分子模型表明,它们与其他的具有相同的结构,由一个反平行的β-折叠和短螺旋组成。尽管如此,真菌海豆球蛋白样肽可能具有不同的二硫键模式。尽管存在这种差异,但根据分子动力学模拟,肽与 N,N,N-三乙酰葡萄糖胺的复合物是稳定的。这是首例来自植物界以外的生物体中海豆球蛋白样肽的报道。真菌中海豆球蛋白样肽的确切作用必须阐明,而在植物中,它们显然参与了植物防御。总之,这里报道的数据清楚地表明,一种基于计算机的策略可以识别新型海豆球蛋白样肽,这些肽可以作为健康和农业领域的生物技术工具。