Department of Chemistry, University of Manitoba, Winnipeg, Manitoba, Canada.
Department of Chemistry, University of Manitoba, Winnipeg, Manitoba, Canada.
Biophys J. 2024 Aug 20;123(16):2422-2430. doi: 10.1016/j.bpj.2024.06.005. Epub 2024 Jun 8.
Ca is a highly abundant ion involved in numerous biological processes, particularly in multicellular eukaryotic organisms where it exerts many of these functions through interactions with Ca binding proteins. The laminin N-terminal (LN) domain is found in members of the laminin and netrin protein families where it plays a critical role in the function of these proteins. The LN domain of laminins and netrins is a Ca binding domain and in many cases requires Ca to perform its biological function. Here, we conduct a detailed examination of the molecular basis of the LN domain Ca interaction combining structural, computational, bioinformatics, and biophysical techniques. By combining computational and bioinformatic techniques with x-ray crystallography we explore the molecular basis of the LN domain Ca interaction and identify a conserved sequence present in Ca binding LN domains. These findings enable a sequence-based prediction of LN domain Ca binding ability. We use thermal shift assays and isothermal titration calorimetry to explore the biophysical properties of the LN domain Ca interaction. We show that the netrin-1 LN domain exhibits a high affinity and specificity for Ca, which structurally stabilizes the LN domain. This study elucidates the molecular foundation of the LN domain Ca binding interaction and provides a detailed functional characterization of this essential interaction, advancing our understanding of protein-Ca dynamics within the context of the LN domain.
钙是一种高度丰富的离子,参与许多生物过程,特别是在多细胞真核生物中,它通过与钙结合蛋白的相互作用发挥许多这些功能。层粘连蛋白 N 端(LN)结构域存在于层粘连蛋白和神经轴索导向因子蛋白家族的成员中,在这些蛋白质的功能中起着关键作用。层粘连蛋白和神经轴索导向因子蛋白的 LN 结构域是一个钙结合结构域,在许多情况下需要钙来发挥其生物学功能。在这里,我们结合结构、计算、生物信息学和生物物理技术,对 LN 结构域钙相互作用的分子基础进行了详细的研究。通过将计算和生物信息学技术与 X 射线晶体学相结合,我们探索了 LN 结构域钙相互作用的分子基础,并确定了钙结合 LN 结构域中存在的保守序列。这些发现使我们能够基于序列预测 LN 结构域的钙结合能力。我们使用热转移分析和等温滴定量热法来研究 LN 结构域钙相互作用的生物物理特性。我们表明,神经轴索导向因子蛋白-1 的 LN 结构域对钙表现出高亲和力和特异性,从而稳定了 LN 结构域的结构。这项研究阐明了 LN 结构域钙结合相互作用的分子基础,并对这种基本相互作用进行了详细的功能表征,从而加深了我们对 LN 结构域中蛋白质-钙动力学的理解。