Majumder Sujata, Roy Avik, Mandal Chhabinath
Drug Design, Development and Molecular Modelling Division, Indian Institute of Chemical Biology Jadavpur, Kolkata-700 032, India.
Glycoconj J. 2004;20(9):545-50. doi: 10.1023/B:GLYC.0000043291.42999.98.
The importance of fucose-binding proteins stems from the presence of fucose as terminal sugars in H and Lewis (a) blood groups. Recently, the structure of a complex between Anguilla anguilla agglutinin (AAA) and alpha-L-fucose has been worked out at 1.9 A resolution. The structure of AAA characterizes the novel fold of an entire lectin family. In the present study, molecular modeling techniques have been used to identify new proteins that can provide a similar fucose binding module in the newly discovered genomic sequences using the above mentioned structural information. We modeled 3-D structures of three such proteins, namely, ebiP5322 protein of Anopheles gambiae, a pentraxin of Xenopus laevis, and the fw gene product of Drosophila melanogaster. alpha-L-fucose was docked in the binding pockets of the modeled structures followed by energy minimization and molecular dynamic runs to obtain the most probable structures of the complexes. Properties of these modeled complexes were studied to examine the nature of physicochemical forces involved in the complex formation and compared with AAA-alpha-L-fucose complex. It was found that ebiP5322 protein of A. gambiae and the pentraxin of X. laevis can provide a fucose-binding fold similar to AAA. We studied structures of four protein-fucose complexes to examine the electrostatic potential surfaces around the binding site and concluded that a highly positive-charged surface was not a necessary condition of fucose-binding.
岩藻糖结合蛋白的重要性源于岩藻糖作为H和Lewis(a)血型中的末端糖的存在。最近,鳗鲡凝集素(AAA)与α-L-岩藻糖之间复合物的结构已在1.9埃分辨率下解析出来。AAA的结构表征了整个凝集素家族的新折叠方式。在本研究中,利用上述结构信息,分子建模技术已被用于在新发现的基因组序列中识别能够提供类似岩藻糖结合模块的新蛋白质。我们对三种这样的蛋白质进行了三维结构建模,即冈比亚按蚊的ebiP5322蛋白、非洲爪蟾的一种五聚体蛋白以及黑腹果蝇的fw基因产物。将α-L-岩藻糖对接至建模结构的结合口袋中,随后进行能量最小化和分子动力学模拟,以获得复合物最可能的结构。研究了这些建模复合物的性质,以考察复合物形成过程中涉及的物理化学力的性质,并与AAA-α-L-岩藻糖复合物进行比较。发现冈比亚按蚊的ebiP5322蛋白和非洲爪蟾的五聚体蛋白能够提供与AAA类似的岩藻糖结合折叠方式。我们研究了四种蛋白质-岩藻糖复合物的结构,以考察结合位点周围的静电势表面,并得出结论,高正电荷表面并非岩藻糖结合的必要条件。