Molecular Biophysics Unit, Indian Institute of Science, C. V. Raman Road, Bangalore, KA 560012, India.
Glycobiology. 2024 Mar 26;34(2). doi: 10.1093/glycob/cwad094.
The unique viviparous Pacific Beetle cockroaches provide nutrition to their embryo by secreting milk proteins Lili-Mip, a lipid-binding glycoprotein that crystallises in-vivo. The resolved in-vivo crystal structure of variably glycosylated Lili-Mip shows a classical Lipocalin fold with an eight-stranded antiparallel beta-barrel enclosing a fatty acid. The availability of physiologically unaltered glycoprotein structure makes Lili-Mip a very attractive model system to investigate the role of glycans on protein structure, dynamics, and function. Towards that end, we have employed all-atom molecular dynamics simulations on various glycosylated stages of a bound and free Lili-Mip protein and characterised the impact of glycans and the bound lipid on the dynamics of this glycoconjugate. Our work provides important molecular-level mechanistic insights into the role of glycans in the nutrient storage function of the Lili-Mip protein. Our analyses show that the glycans stabilise spatially proximal residues and regulate the low amplitude opening motions of the residues at the entrance of the binding pocket. Glycans also preserve the native orientation and conformational flexibility of the ligand. However, we find that either deglycosylation or glycosylation with high-mannose and paucimannose on the core glycans, which better mimic the natural insect glycosylation state, significantly affects the conformation and dynamics. A simple but effective distance- and correlation-based network analysis of the protein also reveals the key residues regulating the barrel's architecture and ligand binding characteristics in response to glycosylation.
独特的胎生太平洋蟑螂通过分泌乳蛋白 Lili-Mip 为胚胎提供营养,Lili-Mip 是一种脂结合糖蛋白,在体内结晶。可变糖基化的 Lili-Mip 的体内解析晶体结构显示出经典的脂联素折叠,具有八链反平行β-桶,包围脂肪酸。生理上未改变的糖蛋白结构的可用性使 Lili-Mip 成为研究聚糖对蛋白质结构、动力学和功能的作用的极具吸引力的模型系统。为此,我们对结合和游离的 Lili-Mip 蛋白的各种糖基化阶段进行了全原子分子动力学模拟,并表征了聚糖和结合的脂质对该糖缀合物动力学的影响。我们的工作为糖在 Lili-Mip 蛋白的营养储存功能中的作用提供了重要的分子水平的机制见解。我们的分析表明,聚糖在空间上稳定了邻近的残基,并调节了结合口袋入口处残基的低振幅开口运动。聚糖还保持了配体的天然取向和构象灵活性。然而,我们发现无论是去糖基化还是在核心聚糖上进行高甘露糖和低甘露糖糖基化,更好地模拟天然昆虫糖基化状态,都会显著影响构象和动力学。对蛋白质进行基于距离和相关性的简单但有效的网络分析也揭示了在响应糖基化时调节桶结构和配体结合特性的关键残基。